Long jump
EventLong jump
WrmenMike Powell (1991)
OrmenBob Beamon   (1968)
CrmenMike Powell (1991)
IcrmenIván Pedroso (1999)
WrwomenGalina Chistyakova (1988)
OrwomenJackie Joyner-Kersee (1988)
CrwomenJackie Joyner-Kersee (1987)
IcrwomenBrittney Reese (2012)

The long jump is a track and field event in which athletes combine speed, strength and agility in an attempt to leap as far as possible from a takeoff point. Along with the triple jump, the two events that measure jumping for distance as a group are referred to as the "horizontal jumps". This event has a history in the ancient Olympic Games and has been a modern Olympic event for men since the first Olympics in 1896 and for women since 1948.

Rules

At the elite level, competitors run down a runway (usually coated with the same rubberized surface as running tracks, crumb rubber or vulcanized rubber, known generally as an all-weather track) and jump as far as they can from a wooden or synthetic board, 20 centimetres or eight inches wide, that is built flush with the runway, into a pit filled with soft damp sand. If the competitor starts the leap with any part of the foot past the foul line, the jump is declared a foul and no distance is recorded. To detect this occurrence, a layer of plasticine is placed at a 90° angle immediately after the board. An official (similar to a referee) will also watch the jump and make the determination. In recent times, camera technology and laser sensors have replaced the plasticine at elite competitions (like Diamond League meetings). The competitor can initiate the jump from any point behind the foul line; however, the distance measured will always be perpendicular from the foul line to the nearest break in the sand caused by any part of the body or uniform. Therefore, it is in the best interest of the competitor to get as close to the foul line as possible. Competitors are allowed to place two marks along the side of the runway in order to assist them to jump accurately. At a lesser meet and facilities, the plasticine will likely not exist, the runway might be a different surface or jumpers may initiate their jump from a painted or taped mark on the runway. At a smaller meet, the number of attempts might also be limited to four or three.

Each competitor has a set number of attempts. That would normally be three trials, with three additional jumps being awarded to the best eight or nine (depending on the number of lanes on the track at that facility, so the event is equatable to track events) competitors. All valid attempts will be recorded but only the best mark counts towards the results. The competitor with the longest valid jump (from either the trial or final rounds) is declared the winner at the end of competition. In the event of an exact tie, then comparing the next best jumps of the tied competitors will be used to determine place. In a large, multi-day elite competition (like the Olympics or World Championships), a qualification is held in order to select at least twelve finalists. Ties and automatic qualifying distances are potential factors. The qualification usually takes place in two groups, with each competitor having three attempts. In the final, a set of three trial rounds will be held, with the best eight performers advancing to the final rounds (attempts four to six). At the 2025 World Championships, the international athletics governing body World Athletics added a new procedure. After the three trial round jumps in the final, the top ten received an additional fourth attempt, the subsequent top eight a fifth attempt and the subsequent top six a final sixth attempt.[1][2] (For specific rules and regulations in United States Track & Field see Rule 185)[3]

For record purposes, the maximum accepted wind assistance is 2 metres per second (4.5 mph).

Take-off-zone reform

World Athletics considered fundamental rule changes to the long jump. In a test phase that began with the 2025 indoor season, athletes took off from a wider zone instead of the traditional take-off board. This new 40-centimetre take-off zone was introduced by World Athletics to reduce the number of invalid attempts (around 30%) which had become common in recent years. The international athletics governing body was convinced that the new take-off zone would not only improve fairness and excitement for the athletes but also provide a more thrilling experience for the spectators.[4]

Traditionally, the jump distance is measured perpendicularly from the foul line to the nearest break in the sand. Under the new trial, the measurement was instead taken from the exact point where the jumper's front foot left the zone.[4] Consequently, the effective jump distance determined the outcome of the competition.

During the test phase, the jumps were also recorded according to the traditional rules and were therefore eligible for records and top lists.

On 5 December 2025, World Athletics announced that the testing phase had been completed and the reform had been ditched.[5]

History

The long jump is the only known jumping event of ancient Greece's original Olympics' pentathlon events. All events that occurred at the Olympic Games were initially supposed to act as a form of training for warfare. The long jump emerged probably because it mirrored the crossing of obstacles such as streams and ravines.[6] After investigating the surviving depictions of the ancient event it is believed that unlike the modern event, athletes were only allowed a short running start.[6] The athletes carried a weight in each hand, which were called halteres (between 1 and 4.5 kg). These weights were swung forward as the athlete jumped in order to increase momentum. It was commonly believed that the jumper would throw the weights behind him in midair to increase his forward momentum; however, halteres were held throughout the duration of the jump. Swinging them down and back at the end of the jump would change the athlete's center of gravity and allow the athlete to stretch his legs outward, increasing his distance. The jump itself was made from the bater ("that which is trod upon"). It was most likely a simple board placed on the stadium track which was removed after the event. The jumpers would land in what was called a skamma ("dug-up" area). The idea that this was a pit full of sand is wrong. Sand in the jumping pit is a modern invention.[7] The skamma was simply a temporary area dug up for that occasion and not something that remained over time.

The long jump was considered one of the most difficult of the events held at the Games since a great deal of skill was required. Music was often played during the jump and Philostratus says that pipes at times would accompany the jump so as to provide a rhythm for the complex movements of the halteres by the athlete.[6] Philostratus is quoted as saying, "The rules regard jumping as the most difficult of the competitions, and they allow the jumper to be given advantages in rhythm by the use of the flute, and in weight by the use of the halter."[8] Most notable in the ancient sport was a man called Chionis, who in the 656 BC Olympics staged a jump of .[9]

There has been some argument by modern scholars over the long jump. Some have attempted to recreate it as a triple jump. The images provide the only evidence for the action so it is more well received that it was much like today's long jump. The main reason some want to call it a triple jump is the presence of a source that claims there once was a fifty-five ancient foot jump done by a man named Phayllos.[10]

The long jump has been part of modern Olympic competition since the inception of the Games in 1896. In 1914, Dr. Harry Eaton Stewart recommended the "running broad jump" as a standardized track and field event for women.[11] However, it was not until 1948 that the women's long jump was added to the Olympic athletics programme.

Technique

There are five main components of the long jump: the approach run, the last two strides, takeoff, action in the air, and landing. Speed in the run-up, or approach, and a high leap off the board are the fundamentals of success. Because speed is such an important factor of the approach, it is not surprising that many long jumpers also compete successfully in sprints. Classic examples of this long jump / sprint doubling are performances by Carl Lewis and Heike Drechsler.

Approach

The objective of the approach is to gradually accelerate to a maximum controlled speed at takeoff. The most important factor for the distance travelled by an object is its velocity at takeoff – both the speed and angle. Elite jumpers usually leave the ground at an angle of 20° or less;[12] therefore, it is more beneficial for a jumper to focus on the speed component of the jump. The greater the speed at takeoff, the longer the trajectory of the center of mass will be. The importance of takeoff speed is a factor in the success of sprinters in this event.

The length of the approach is usually consistent distance for an athlete. Approaches can vary between 12 and 19 steps on the novice and intermediate levels, while at the elite level they are closer to between 20 and 22 steps. The exact distance and number of steps in an approach depends on the jumper's experience, sprinting technique, and conditioning level. Consistency in the approach is important as it is the competitor's objective to get as close to the front of the takeoff board as possible without crossing the line with any part of the foot.

Last two steps

The objective of the last two steps is to prepare the body for takeoff while conserving as much speed as possible.

The penultimate step is longer than the previous ones and than the final one before takeoff. The competitor begins to lower his or her center of gravity to prepare the body for the vertical impulse. The last step is shorter because the body is beginning to raise the center of gravity in preparation for takeoff.

The last two steps are extremely important because they determine the velocity at which the competitor will enter the jump.

Takeoff

The objective of the takeoff is to create a vertical impulse through the athlete's center of gravity while maintaining balance and control.

This phase is one of the most technical parts of the long jump. Jumpers must be conscious to place the foot flat on the ground, because jumping off either the heels or the toes negatively affects the jump. Taking off from the board heel-first has a braking effect, which decreases velocity and strains the joints. Jumping off the toes decreases stability, putting the leg at risk of buckling or collapsing from underneath the jumper. While concentrating on foot placement, the athlete must also work to maintain proper body position, keeping the torso upright and moving the hips forward and up to achieve the maximum distance from board contact to foot release.

There are four main styles of takeoff: the double-arm style, the kick style, the power sprint or bounding takeoff, and the sprint takeoff.

Double-arm

The double-arm style of takeoff works by moving both arms in a vertical direction as the competitor takes off. This produces a high hip height and a large vertical impulse.

Kick

The kick style takeoff is where the athlete actively cycles the leg before a full impulse has been directed into the board then landing into the pit. This requires great strength in the hamstrings. This causes the jumper to jump to large distances.

Power sprint or bounding

The power sprint takeoff, or bounding takeoff, is one of the more common elite styles. Very similar to the sprint style, the body resembles a sprinter in full stride. However, there is one major difference. The arm that pushes back on takeoff (the arm on the side of the takeoff leg) fully extends backward, rather than remaining at a bent position. This additional extension increases the impulse at takeoff.

Sprint

The sprint takeoff is the style most widely instructed by coaching staff. This is a classic single-arm action that resembles a jumper in full stride. It is an efficient takeoff style for maintaining velocity through takeoff.

The "correct" style of takeoff will vary from athlete to athlete.

Action in the air and landing

There are three major flight techniques for the long jump: the hang, the hitch-kick, and the sail. Each technique is to combat the forward rotation experienced from take-off but is basically down to preference from the athlete. Once the body is airborne, there is nothing that the athlete can do to change the direction they are traveling and consequently where they are going to land in the pit. However, certain techniques influence an athlete's landing, which can affect the distance measured. For example, if an athlete lands feet first but falls back because they are not correctly balanced, a lower distance will be measured.

Hang

Following the pivotal takeoff phase, the jumper executes a deliberate maneuver wherein the free leg descends until it aligns directly beneath the hips. This strategic positioning, characterized by an elongated and streamlined body silhouette, is meticulously crafted to minimize rotational forces. By maximizing the distance between both the arm and leg extremities and the hips—the theoretical center of mass—the rotational inertia is significantly increased. Leveraging the principle that longer levers rotate at a slower pace than shorter ones, this configuration facilitates a controlled and stable aerial trajectory.

As the free leg descends to meet the takeoff leg, forming an angle of 180° relative to the ground, a symmetrical alignment is achieved with both knees positioned directly beneath the hips. This alignment marks the apex of stability during the airborne phase, as minimal rotational tendencies are manifested. This aerodynamically advantageous posture, colloquially termed the "180° position", epitomizes the pinnacle of equilibrium, affording the jumper enhanced control and poise amidst the dynamic forces encountered in flight.[13]

Hitch-kick

In the realm of athletic performance, particularly in the domain of jumping techniques, a prevalent strategy observed among practitioners involves the utilization of a single-step arm and leg cycle. This technique, ingrained within the repertoire of many athletes, serves a fundamental purpose: to mitigate and alleviate the forward rotation momentum experienced during the jump. Characterized by a deliberate and synchronized motion of the arms and legs, this cycling maneuver is strategically devised to offset the rotational forces generated at the moment of takeoff.

Central to the efficacy of this technique is its capacity to orchestrate secondary rotations of both the upper and lower extremities, thereby fostering a mechanical equilibrium that counterbalances the initial rotational impulses triggered upon liftoff. By implementing this methodological approach, athletes can harness the principles of biomechanics to optimize their jumping performance, enhancing stability, control, and overall efficiency in their aerial endeavors.[14] This nuanced understanding underscores the intricate interplay between physics and human kinetics, illuminating the sophisticated strategies employed by athletes to excel in their athletic pursuits.

Sail

The "sail technique" represents a fundamental long jump approach widely employed by athletes in competitive settings. Following the culmination of the takeoff phase, practitioners swiftly elevate their legs into a configuration aimed at touching the toes.[15] This maneuver serves as an entry-level strategy particularly beneficial for novice jumpers, facilitating an early transition into the landing posture. However, despite its utility in expediting the landing process, this technique fails to mitigate the inherent forward rotational momentum of the body effectively. Consequently, while advantageous for its simplicity and expedited landing preparation, the sail technique lacks the requisite mechanisms to adequately counteract excessive forward rotation, posing a notable limitation to its effectiveness in optimizing jump performance.[16]

Somersault

In the 1970s, some jumpers used a forward somersault, including Tuariki Delamere who used it at the 1974 NCAA Championships, and who matched the jump of the then Olympic champion Randy Williams. The somersault jump has potential to produce longer jumps than other techniques because in the flip, no power is lost countering forward momentum, and it reduces wind resistance in the air.[17] The front flip jump was subsequently banned for fear that it was unsafe.

Record performances

The men's long jump world record has been held by just four individuals for the majority of time since the IAAF (now World Athletics) started to ratify records. The first mark recognized by the IAAF in 1912, the performance by Peter O'Connor in August 1901, stood just short of 20 years (nine years as an IAAF record). After it was broken in 1921, the record changed hands five times until Jesse Owens set the mark of at the 1935 Big Ten track meet in Ann Arbor, Michigan, a record that was not broken for over 25 years, until 1960 by Ralph Boston. Boston improved upon it and exchanged records with Igor Ter-Ovanesyan three times over the next seven years. At the 1968 Summer Olympics, Bob Beamon jumped at an altitude of 2,292 m (7,520 ft),[18] a record jump not exceeded for almost 23 years, and which remains the second longest wind legal jump of all time; it has now stood as the Olympic record for over 57 years. On 30 August 1991, Mike Powell of the United States set the current men's world record at the World Championships in Tokyo. It was in a dramatic showdown against Carl Lewis who also surpassed Beamon's record that day, but his jump was wind-assisted (and thus not legal for record purposes). Powell's record of has now stood for over 35 years.

Some jumps over have been officially recorded. Wind-assisted were recorded by Powell at high altitude in Sestriere in 1992. A potential world record of was recorded by Iván Pedroso also in Sestriere. Despite a "legal" wind reading, the jump was not validated because videotape revealed a person standing in front of the wind gauge, invalidating the reading (and costing Pedroso a Ferrari valued at $130,000—the prize for breaking the record at that meet).[19] As mentioned above, Lewis jumped moments before Powell's record-breaking jump with the wind exceeding the maximum allowed. This jump remains the longest ever not to win an Olympic or World Championship gold medal, or any competition in general.

The women's world record has seen more consistent improvement, though the current record has stood longer than any other long jump world record by men or women. The longest to hold the record prior was by Fanny Blankers-Koen during World War II, who held it for over 10 years. There have been four occasions when the record was tied and three when it was improved upon twice in the same competition. The current women's world record is held by Galina Chistyakova of the former Soviet Union who leapt in Leningrad on 11 June 1988, a mark that has now stood for over 38 years.

Area records

AreaMenWomen
MarkWind
(m/s)
SeasonAthleteMarkWind
(m/s)
SeasonAthlete
World'+0.31991Mike Powell (United States)'+1.41988Galina Chistyakova (Soviet Union)
Area records
Africa (records)' +1.32017Luvo Manyonga (South Africa)'+1.12021Ese Brume (Nigeria)
Asia (records)'+0.62006Mohammed Al-Khuwalidi (Saudi Arabia)'+1.41993Yao Weili (China)
Europe (records)' +1.91987Robert Emmiyan (Soviet Union)'+1.41988Galina Chistyakova (Soviet Union)
North, Central America
and Caribbean
(records)
'+0.31991Mike Powell (United States)'+1.31994Jackie Joyner-Kersee (United States)
' +1.7
Oceania (records)'+1.72011Mitchell Watt (Australia)'+1.82022Brooke Buschkuehl (Australia)
South America (records)'+1.22008Irving Saladino (Panama)' +1.81999Maurren Maggi (Brazil)

All-time top 25

Men

Ath.#Perf.#MarkWind
(m/s)
AthleteNationDatePlace
11+0.3Mike PowellUnited States30 August 1991Tokyo
22 +2.0Bob BeamonUnited States18 October 1968Mexico City
33−0.2Carl LewisUnited States30 August 1991Tokyo
44 +1.9Robert EmmiyanSoviet Union22 May 1987Tsaghkadzor
5+1.7Lewis #230 August 1991Tokyo
6+1.9Lewis #319 June 1983Indianapolis
 Lewis #427 January 1984New York City
8+1.0Lewis #524 July 1982Indianapolis
+0.8Lewis #618 July 1988Indianapolis
510+1.4Larry MyricksUnited States18 July 1988Indianapolis
 +2.0Erick WalderUnited States2 April 1994El Paso
−1.2Dwight PhillipsUnited States7 June 2009Eugene
813+1.2Irving SaladinoPanama24 May 2008Hengelo
14−0.2Lewis #726 September 1988Seoul
15−0.4Lewis #813 May 1984Westwood
+0.1Lewis #919 June 1984Los Angeles
915+1.9Iván PedrosoCuba18 July 1995Salamanca
 Sebastian BayerGermany8 March 2009Turin
19+0.9Myricks #217 June 1989Houston
+0.7Powell #227 July 1993Salamanca
+1.6Pedroso #212 August 1995Gothenburg
1122+0.5Tajay GayleJamaica28 September 2019Doha
23+1.0Lewis #105 August 1992Barcelona
+1.6Pedroso #317 June 1995Lisbon
1223+1.7Juan Miguel EchevarríaCuba30 June 2018Bad Langensalza[23]
13+1.6Louis TsatoumasGreece2 June 2007Kalamata
14 +1.3Luvo ManyongaSouth Africa22 April 2017Potchefstroom
−0.3Miltiadis TentoglouGreece8 June 2024Rome[24]
16+0.5Kareem Streete-ThompsonUnited States4 July 1994Linz
17+0.7James BeckfordJamaica5 April 1997Orlando
18 Miguel PateUnited States1 March 2002New York City
19+1.8Jarrion LawsonUnited States3 July 2016Eugene[25]
20 Yago LamelaSpain7 March 1999Maebashi
+0.2Aleksandr MenkovRussia16 August 2013Moscow
22+0.9Lutz DombrowskiEast Germany28 July 1980Moscow
+1.7Mitchell WattAustralia29 July 2011Stockholm
+1.2Wayne PinnockJamaica23 August 2023Budapest[26]
25+1.2Jaime JeffersonCuba12 May 1990Havana

Key

Tables show data for two definitions of "Top 25" - the top 25 distances and the top 25 athletes:

Para marks

Performances by disabled athletes that would qualify for the all-time top 25:

ClassMarkWind
(m/s)
AthleteDatePlace
T64+1.6Markus Rehm (Germany)25 June 2023Rhede[27]

Assisted marks

Any performance with a following wind of more than 2.0 metres per second is not counted for record purposes. Below is a list of wind-assisted jumps (equal or superior to 8.53 m). Only the best assisted mark that is superior to the legal best is shown:

MarkWind
(m/s)
AthleteDatePlace
 +4.4Mike Powell (United States)21 July 1992Sestriere
+3.3Juan Miguel Echevarría (Cuba)10 March 2019Havana
+2.9Carl Lewis (United States)30 August 1991Tokyo
+3.0Iván Pedroso (Cuba)21 May 1992Havana
+3.1Fabrice Lapierre (Australia)18 April 2010Perth
+3.2Tafadzwa Chikomba (Zimbabwe)27 May 2026Fayetteville[28]
+4.9James Beckford (Jamaica)19 May 1995Odessa
+3.7Marquis Dendy (United States)25 June 2015Eugene
 +4.0Joe Greene (United States)21 July 1992Sestriere
+3.5Kareem Streete-Thompson (CAY)18 June 1994Knoxville
+3.9Mike Conley (United States)20 June 1986Eugene
+2.9Jeff Henderson (United States)3 July 2016Eugene
+5.2Jason Grimes (United States)27 June 1982Durham
+4.9Kevin Dilworth (United States)27 April 2002Fort-de-France

Women

  • As of February 2024[29]
Ath.#Perf.#MarkWind
(m/s)
AthleteNationDatePlace
11+1.4Galina ChistyakovaSoviet Union11 June 1988Leningrad
22+1.3Jackie Joyner-KerseeUnited States22 May 1994New York City
2 +1.7Joyner-Kersee #231 July 1994Sestriere
34+1.2Heike DrechslerEast Germany9 July 1988Neubrandenburg
4+0.4Drechsler #28 July 1992Lausanne
6+0.9Drechsler #321 June 1986Tallinn
+1.1Drechsler #43 July 1986Dresden
+0.6Joyner-Kersee #313 August 1987Indianapolis
+1.0Chistyakova #211 June 1988Leningrad
+1.6Chistyakova #312 August 1988Budapest
11+2.0Drechsler #522 September 1985Berlin
412+1.4Anişoara CuşmirRomania4 June 1983Bucharest
513+2.0Tatyana KotovaRussia23 June 2002Annecy
14+1.8Drechsler #626 July 1984Dresden
+0.7Drechsler #721 August 1987Potsdam
+0.9Joyner-Kersee #429 September 1988Seoul
17+0.3Drechsler #821 August 1985Zurich
617+0.5Yelena BelevskayaSoviet Union18 July 1987Bryansk
17Joyner-Kersee #525 June 1988San Diego
20 Drechsler #913 February 1988Vienna
 +1.8Drechsler #1031 July 1991Sestriere
720Inessa KravetsUkraine13 June 1992Kyiv
23+0.4Joyner-Kersee #64 September 1987Rome
+1.8Belevskaya #211 June 1988Leningrad
+1.8Drechsler #1128 May 1992Jena
8+0.4Tatyana LebedevaRussia31 July 2004Tula
9+1.5Olena KhlopotnovaSoviet Union12 September 1985Alma Ata
+1.9Marion JonesUnited States31 May 1998Eugene
+1.7Brittney ReeseUnited States2 July 2016Eugene[30]
12−0.8Malaika MihamboGermany6 October 2019Doha[31]
13−0.4Irina SimaginaRussia31 July 2004Tula
14 +1.8Maurren MaggiBrazil25 June 1999Bogotá
15+1.0Larysa BerezhnaSoviet Union25 May 1991Granada
 Ivana ŠpanovićSerbia5 March 2017Belgrade
17+1.6Helga RadtkeEast Germany26 July 1984Dresden
+1.9Lyudmila KolchanovaRussia27 May 2007Sochi
19−0.3Vali IonescuRomania1 August 1982Bucharest
+2.0Irena OženkoSoviet Union12 September 1986Budapest
+0.8Yelena SinchukovaSoviet Union20 June 1991Budapest
+0.7Irina MushailovaRussia14 July 1994Saint Petersburg
23  Tara Davis-WoodhallUnited States16 February 2024Albuquerque[32]
24+1.8Irina ValyukevichSoviet Union18 July 1987Bryansk
+0.6Tianna BartolettaUnited States17 August 2016Rio de Janeiro[33]
+1.1Ese BrumeNigeria29 May 2021Chula Vista[34]

Key

Tables show data for two definitions of "Top 25" - the top 25 distances and the top 25 athletes:

Assisted marks

Any performance with a following wind of more than 2.0 metres per second is not counted for record purposes. Below is a list of wind-assisted jumps (equal or superior to 7.17 m). Only the best assisted mark that is superior to the legal best is shown:

MarkWind
(m/s)
AthleteDatePlace
 +2.1Heike Drechsler (Germany)21 July 1992Sestriere
+2.7Yulimar Rojas (Venezuela)13 June 2021La Nucia
+2.8Tara Davis (United States)9 July 2022Chula Vista
 +4.3Fiona May (Italy)29 July 1995Sestriere
+4.3Anastassia Mirochuk-Ivanova (Belarus)6 July 2012Grodno
 +3.7Susen Tiedtke (Germany)28 July 1993Sestriere
+3.6Eva Murková (Czechoslovakia)26 August 1984Nitra

World Indoor Championship medalists

Men

1985 Paris
Jan Leitner (Czechoslovakia)7.96 mGyula Pálóczi (Hungary)7.94 mGiovanni Evangelisti (Italy)7.88 m
1987 Indianapolis
Larry Myricks (United States)8.23 mPaul Emordi (Nigeria)8.01 mGiovanni Evangelisti (Italy)8.01 m
1989 Budapest
Larry Myricks (United States)8.37 mDietmar Haaf (West Germany)8.17 mMike Conley (United States)8.11 m
1991 Seville
Dietmar Haaf (Germany)8.15 mJaime Jefferson (Cuba)8.04 mGiovanni Evangelisti (Italy)7.93 m
1993 Toronto
Iván Pedroso (Cuba)8.23 mJoe Greene (United States)8.13 mJaime Jefferson (Cuba)7.98 m
1995 Barcelona
Iván Pedroso (Cuba)8.51 mMattias Sunneborn (Sweden)8.20 mErick Walder (United States)8.14 m
1997 Paris
Iván Pedroso (Cuba)8.51 mKirill Sosunov (Russia)8.41 mJoe Greene (United States)8.41 m
1999 Maebashi
Iván Pedroso (Cuba)8.62 mYago Lamela (Spain)8.56 mErick Walder (United States)8.30 m
2001 Lisbon
Iván Pedroso (Cuba)8.43 mKareem Streete-Thompson (CAY)8.16 mCarlos Calado (Portugal)8.16 m
2003 Birmingham
Dwight Phillips (United States)8.29 mYago Lamela (Spain)8.28 mMiguel Pate (United States)8.21 m
2004 Budapest
Savanté Stringfellow (United States)8.40 mJames Beckford (Jamaica)8.31 mVitaliy Shkurlatov (Russia)8.28 m
2006 Moscow
Ignisious Gaisah (Ghana)8.30 mIrving Saladino (Panama)8.29 mAndrew Howe (Italy)8.19 m
2008 Valencia
Godfrey Khotso Mokoena (South Africa)8.08 mChris Tomlinson (United Kingdom)8.06 mMohammed Al-Khuwalidi (Saudi Arabia)8.01 m
2010 Doha
Fabrice Lapierre (Australia)8.17 mGodfrey Khotso Mokoena (South Africa)8.08 mMitchell Watt (Australia)8.05 m
2012 Istanbul
Mauro Vinícius da Silva (Brazil)8.23 mHenry Frayne (Australia)8.23 mAleksandr Menkov (Russia)8.22 m
2014 Sopot
Mauro Vinícius da Silva (Brazil)8.28 mLi Jinzhe (China)8.23 mMichel Tornéus (Sweden)8.21 m
2016 Portland
Marquis Dendy (United States)8.26 mFabrice Lapierre (Australia)8.25 mHuang Changzhou (China)8.21 m
2018 Birmingham
Juan Miguel Echevarría (Cuba)8.46 mLuvo Manyonga (South Africa)8.44 mMarquis Dendy (United States)8.42 m
2022 Belgrade
Miltiadis Tentoglou (Greece)8.55 mThobias Montler (Sweden)8.38 mMarquis Dendy (United States)8.27 m
2024 Glasgow
Miltiadis Tentoglou (Greece)8.22 mMattia Furlani (Italy)8.22 mCarey McLeod (Jamaica)8.21 m
2025 Nanjing
Mattia Furlani (Italy)8.30 mWayne Pinnock (Jamaica)8.29 mLiam Adcock (Australia)8.28 m
2026 Toruń
Gerson Baldé (Portugal)8.46 mMattia Furlani (Italy)8.39 mBozhidar Sarâboyukov (Bulgaria)8.31 m

Women

1985 Paris
Helga Radtke (East Germany)6.88 mTatyana Rodionova (Soviet Union)6.72 mNijolė Medvedeva (Soviet Union)6.44 m
1987 Indianapolis
Heike Drechsler (East Germany)7.10 mHelga Radtke (East Germany)6.94 mYelena Belevskaya (Soviet Union)6.76 m
1989 Budapest
Galina Chistyakova (Soviet Union)6.98 mMarieta Ilcu (Romania)6.86 mLarysa Berezhna (Soviet Union)6.82 m
1991 Seville
Larysa Berezhna (Soviet Union)6.84 mHeike Drechsler (Germany)6.82 mMarieta Ilcu (Romania)6.74 m
1993 Toronto
Marieta Ilcu (Romania)6.84 mSusen Tiedtke (Germany)6.84 mInessa Kravets (Ukraine)6.77 m
1995 Barcelona
Lyudmila Galkina (Russia)6.95 mIrina Mushailova (Russia)6.90 mSusen Tiedtke-Greene (Germany)6.90 m
1997 Paris
Fiona May (Italy)6.86 mChioma Ajunwa (Nigeria)6.80 mAgata Karczmarek (Poland)6.71 m
1999 Maebashi
Tatyana Kotova (Russia)6.86 mShana Williams (United States)6.82 mIva Prandzheva (Bulgaria)6.78 m
2001 Lisbon
Dawn Burrell (United States)7.03 mTatyana Kotova (Russia)6.98 mNiurka Montalvo (Spain)6.88 m
2003 Birmingham
Tatyana Kotova (Russia)6.84 mInessa Kravets (Ukraine)6.72 mMaurren Maggi (Brazil)6.70 m
2004 Budapest
Tatyana Lebedeva (Russia)6.98 mTatyana Kotova (Russia)6.93 mCarolina Klüft (Sweden)6.92 m
2006 Moscow
Tianna Madison (United States)6.80 mNaide Gomes (Portugal)6.76 mConcepción Montaner (Spain)6.76 m
2008 Valencia
Naide Gomes (Portugal)7.00 mMaurren Maggi (Brazil)6.89 mIrina Simagina (Russia)6.88 m
2010 Doha
Brittney Reese (United States)6.70 mNaide Gomes (Portugal)6.67 mKeila Costa (Brazil)6.63 m
2012 Istanbul
Brittney Reese (United States)7.23 mJanay DeLoach (United States)6.98 mShara Proctor (United Kingdom)6.89 m
2014 Sopot
Éloyse Lesueur (France)6.85 mKatarina Johnson-Thompson (United Kingdom)6.81 mIvana Španović (Serbia)6.77 m
2016 Portland
Brittney Reese (United States)7.22 mIvana Španović (Serbia)7.07 mLorraine Ugen (United Kingdom)6.93 m
2018 Birmingham
Ivana Španović (Serbia)6.96 mBrittney Reese (United States)6.89 mSosthene Moguenara (Germany)6.85 m
2022 Belgrade
Ivana Vuleta (Serbia)7.06 mEse Brume (Nigeria)6.85 mLorraine Ugen (United Kingdom)6.82 m
2024 Glasgow
Tara Davis-Woodhall (United States)7.07 mMonae' Nichols (United States)6.85 mFátima Diame (Spain)6.78 m
2025 Nanjing
Claire Bryant (United States)6.96 mAnnik Kälin (Switzerland)6.83 mFátima Diame (Spain)6.72 m
2026 Toruń
Agate de Sousa (Portugal)6.92 mLarissa Iapichino (Italy)6.87 mNatalia Linares (Colombia)6.80 m

Medal table

  • Known as the World Indoor Games

World leading marks

Men

YearMarkAthletePlace
1960Ralph Boston (United States)Walnut
1961Ralph Boston (United States)Moscow
1962 Igor Ter-Ovanesyan (Soviet Union)Yerevan
19638.33 m (27 ft 4 in)[35]Phil Shinnick (United States)Modesto
1964Ralph Boston (United States)Los Angeles
19658.35 m (27 ft 5 in)[36]Ralph Boston (United States)Modesto
1966 Igor Ter-Ovanesyan (Soviet Union)Dortmund
Leselidze
1967 Igor Ter-Ovanesyan (Soviet Union)Mexico City
1968 Bob Beamon (United States)Mexico City
1969Igor Ter-Ovanesyan (Soviet Union)Odesa
Waldemar Stępień (Poland)Chorzów
1970Josef Schwarz (West Germany)Stuttgart
1971[37]Ron Coleman (United States)Irvine
1972Randy Williams (United States)Munich
19738.24 m (27 ft 12 in)James McAlister (United States)Westwood
1974Arnie Robinson (United States)Modesto
1975Nenad Stekić (Yugoslavia)Montreal
1976Arnie Robinson (United States)Montreal
1977Nenad Stekić (Yugoslavia)Nova Gorica
1978Nenad Stekić (Yugoslavia)Rovereto
1979Larry Myricks (United States)Montreal
1980Lutz Dombrowski (East Germany)Moscow
1981Carl Lewis (United States)Sacramento
1982Carl Lewis (United States)Indianapolis
1983Carl Lewis (United States)Indianapolis
1984 Carl Lewis (United States)New York City
1985Carl Lewis (United States)Brussels
1986Robert Emmiyan (Soviet Union)Moscow
1987 Robert Emmiyan (Soviet Union)Tsaghkadzor
1988Carl Lewis (United States)Indianapolis
1989Larry Myricks (United States)Houston
1990Mike Powell (United States)Villeneuve d'Ascq
1991Mike Powell (United States)Tokyo
1992Carl Lewis (United States)Barcelona
1993Mike Powell (United States)Salamanca
1994Erick Walder (United States)El Paso
1995Iván Pedroso (Cuba)Salamanca
1996Erick Walder (United States)Springfield
1997Iván Pedroso (Cuba)Padua
1998James Beckford (Jamaica)Bad Langensalza
1999 Iván Pedroso (Cuba)Maebashi
2000Iván Pedroso (Cuba)Jena
2001 Iván Pedroso (Cuba)Lisbon
2002 Miguel Pate (United States)New York City
2003Yago Lamela (Spain)Castellón de la Plana
2004Dwight Phillips (United States)Linz
2005Dwight Phillips (United States)Helsinki
2006Irving Saladino (Panama)Rio de Janeiro
2007Louis Tsatoumas (Greece)Kalamáta
2008Irving Saladino (Panama)Hengelo
2009Dwight Phillips (United States)Eugene
2010Christian Reif (Germany)Barcelona
2011Mitchell Watt (Australia)Stockholm
2012Greg Rutherford (United Kingdom)Chula Vista
Sergey Morgunov (Russia)Cheboksary
2013Aleksandr Menkov (Russia)Moscow
2014Greg Rutherford (United Kingdom)Chula Vista
2015Jeff Henderson (United States)Toronto
2016Jarrion Lawson (United States)Eugene
2017 Luvo Manyonga (South Africa)Potchefstroom
2018Juan Miguel Echevarría (Cuba)Bad Langensalza
2019Tajay Gayle (Jamaica)Doha
2020 Juan Miguel Echevarría (Cuba)Madrid
2021Miltiadis Tentoglou (Greece)Kallithea
2022 Miltiadis Tentoglou (Greece)Belgrade
2023Wayne Pinnock (Jamaica)Budapest
2024Miltiadis Tentoglou (Greece)Rome
2025Miltiadis Tentoglou (Greece)Madrid
2026Simon Ehammer (Switzerland)Götzis

Women

YearMarkAthletePlace
1960Hildrun Claus (East Germany)Erfurt
1961Tatyana Shchelkanova (Soviet Union)Moscow
1962Tatyana Shchelkanova (Soviet Union)Brussels
1963Tatyana Shchelkanova (Soviet Union)Kurayoshi
1964Mary Rand (United Kingdom)Tokyo
1965Tatyana Shchelkanova (Soviet Union)Kyiv
1966 Tatyana Shchelkanova (Soviet Union)Dortmund
Dnipropetrovsk
1967Ingrid Becker (West Germany)Kyiv
1968 Viorica Viscopoleanu (Romania)Mexico City
1969Heide Rosendahl (West Germany)Leverkusen
Sieglinde Ammann (Switzerland)Vienna
1970Heide Rosendahl (West Germany)Turin
1971Margrit Herbst (East Germany)Leipzig
1972Heide Rosendahl (West Germany)Munich
1973Angela Schmalfeld (East Germany)Dresden
1974Angela Schmalfeld (East Germany)East Berlin
Marianne Voelzke (East Germany)East Berlin
1975Lidiya Alfeyeva (Soviet Union)Nice
1976Siegrun Siegl (East Germany)Dresden
1977Vilma Bardauskienė (Soviet Union)Krasnodar
1978Vilma Bardauskienė (Soviet Union)Prague
1979Brigitte Wujak (East Germany)Potsdam
1980Tatyana Kolpakova (Soviet Union)Moscow
1981 Jodi Anderson (United States)Colorado Springs
1982Valy Ionescu (Romania)Bucharest
1983Anișoara Cușmir (Romania)Bucharest
1984Heike Daute (East Germany)Dresden
1985Heike Drechsler (East Germany)East Berlin
1986Heike Drechsler (East Germany)Tallinn
1987Jackie Joyner-Kersee (United States)Indianapolis
1988Galina Chistyakova (Soviet Union)Leningrad
1989 Galina Chistyakova (Soviet Union)Lipetsk
1990Galina Chistyakova (Soviet Union)Bratislava
1991 Heike Drechsler (Germany)Sestriere
1992Heike Drechsler (Germany)Lausanne
1993Heike Drechsler (Germany)Zurich
1994Jackie Joyner-Kersee (United States)New York City
 Sestriere
1995 Heike Drechsler (Germany)Liévin
Sindelfingen
1996Chioma Ajunwa (Nigeria)Atlanta
1997Lyudmila Galkina (Russia)Athens
1998Marion Jones (United States)Eugene
1999 Maurren Maggi (Brazil)Bogotá
2000Fiona May (Italy)Rio de Janeiro
2001Tatyana Kotova (Russia)Turin
2002Tatyana Kotova (Russia)Annecy
2003Maurren Maggi (Brazil)Milan
2004Tatyana Lebedeva (Russia)Tula
2005Irina Simagina (Russia)Sochi
2006Tatyana Kotova (Russia)Novosibirsk
2007Lyudmila Kolchanova (Russia)Sochi
2008Naide Gomes (Portugal)Monaco
2009Brittney Reese (United States)Berlin
2010Olga Kucherenko (Russia)Sochi
2011Brittney Reese (United States)Eugene
2012 Brittney Reese (United States)Istanbul
2013Brittney Reese (United States)Doha
2014Tianna Bartoletta (United States)Oslo
2015Tianna Bartoletta (United States)Beijing
2016Brittney Reese (United States)Eugene
2017 Ivana Španović (Serbia)Belgrade
2018Lorraine Ugen (United Kingdom)Birmingham
2019Malaika Mihambo (Germany)Doha
2020 Malaika Mihambo (Germany)Berlin
2021Ese Brume (Nigeria)Chula Vista
2022Brooke Buschkuehl (Australia)Chula Vista
2023Ivana Vuleta (Serbia)Budapest
2024Malaika Mihambo (Germany)Rome
2025Tara Davis-Woodhall (United States)Tokyo
New York City
2026Alyssa Jones (United States)Fayetteville

See also

References

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  2. ^ "Tokyo 2025 | Women – Long Jump – Final – Results". World Athletics. 17 September 2025. Retrieved 2 January 2026.
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Cited sources

Further reading