Zürcher Nachrichten - 2026 Fields Medals Awarded to Four of World's Top Mathematicians

EUR -
AED 4.179616
AFN 75.678542
ALL 93.750507
AMD 416.391061
AOA 1043.62306
ARS 1701.742833
AUD 1.62823
AWG 2.048552
AZN 1.939126
BAM 1.95482
BBD 2.291551
BDT 140.33961
BHD 0.429077
BIF 3398.920554
BMD 1.138084
BND 1.468638
BOB 12.634496
BRL 5.77703
BSD 1.137729
BTN 109.806478
BWP 15.715703
BYN 3.263378
BYR 22306.449845
BZD 2.288212
CAD 1.602206
CDF 2569.793986
CHF 0.930242
CLF 0.027302
CLP 1074.590078
CNY 7.705114
CNH 7.707203
COP 3656.550648
CRC 517.728952
CUC 1.138084
CUP 30.159231
CVE 110.212626
CZK 24.135916
DJF 202.593046
DKK 7.475625
DOP 66.255604
DZD 151.799566
EGP 58.440507
ERN 17.071263
ETB 183.635495
FJD 2.56217
FKP 0.855066
GBP 0.853328
GEL 2.987506
GGP 0.855066
GHS 13.231189
GIP 0.855066
GMD 84.21797
GNF 9982.256374
GTQ 8.679418
GYD 238.024341
HKD 8.925175
HNL 30.473314
HRK 7.535027
HTG 148.752777
HUF 360.796561
IDR 20399.419096
ILS 3.467003
IMP 0.855066
INR 109.67484
IQD 1490.432806
IRR 1565178.714879
ISK 143.01197
JEP 0.855066
JMD 180.459488
JOD 0.806855
JPY 186.34592
KES 147.313836
KGS 99.525882
KHR 4600.571239
KMF 492.790428
KRW 1662.194735
KWD 0.352874
KYD 0.948099
KZT 540.951547
LAK 25761.626127
LBP 101881.909096
LKR 382.338232
LRD 205.921289
LSL 19.216155
LTL 3.360467
LVL 0.688415
LYD 7.280476
MAD 10.654656
MDL 20.108384
MGA 5041.38282
MKD 61.539404
MMK 2390.228125
MNT 4091.090922
MOP 9.189848
MRU 45.408626
MUR 53.968211
MVR 17.58333
MWK 1972.758529
MXN 19.873851
MYR 4.656363
MZN 72.695153
NAD 19.216408
NGN 1555.066937
NIO 41.869
NOK 10.896906
NPR 175.689793
NZD 1.963856
OMR 0.437575
PAB 1.137709
PEN 3.871858
PGK 5.089581
PHP 70.280141
PKR 316.032789
PLN 4.314471
PYG 6878.580159
QAR 4.136198
RON 5.23211
RSD 117.434388
RUB 88.366048
RWF 1676.414977
SAR 4.281093
SBD 9.196978
SCR 15.207023
SDG 683.418008
SEK 11.04715
SGD 1.468601
SLE 27.626995
SOS 650.162475
SRD 43.011047
STD 23556.044655
STN 24.487395
SVC 9.955269
SZL 19.213857
THB 38.310187
TJS 10.495259
TMT 3.983295
TND 3.372309
TRY 53.883053
TTD 7.730021
TWD 36.836941
TZS 3007.383804
UAH 50.98917
UGX 4288.84886
USD 1.138084
UYU 45.689091
UZS 13768.912508
VES 843.606486
VND 29962.342095
VUV 134.847547
WST 3.124845
XAF 655.610886
XAG 0.019474
XAU 0.00028
XCD 3.075729
XCG 2.050472
XDR 0.815921
XOF 655.645433
XPF 119.331742
YER 270.960517
ZAR 19.136089
ZMK 10244.137451
ZMW 21.076059
ZWL 366.46264
  • CMSD

    0.0250

    22.025

    +0.11%

  • RIO

    0.5300

    92.04

    +0.58%

  • BCC

    1.3750

    77.835

    +1.77%

  • CMSC

    -0.0400

    21.75

    -0.18%

  • JRI

    0.0400

    12.94

    +0.31%

  • BCE

    0.1050

    21.315

    +0.49%

  • GSK

    0.4600

    51.2

    +0.9%

  • RBGPF

    -0.7300

    66

    -1.11%

  • BTI

    1.0500

    60.89

    +1.72%

  • RYCEF

    -0.1600

    18.09

    -0.88%

  • BP

    -0.2200

    43.71

    -0.5%

  • RELX

    1.3750

    34.235

    +4.02%

  • AZN

    0.1050

    168.375

    +0.06%

  • VOD

    -0.0250

    15.225

    -0.16%

  • NGG

    0.1850

    82.555

    +0.22%

2026 Fields Medals Awarded to Four of World's Top Mathematicians
2026 Fields Medals Awarded to Four of World's Top Mathematicians

2026 Fields Medals Awarded to Four of World's Top Mathematicians

The award, nicknamed the Nobel Prize of mathematics, recognizes outstanding achievement - and the promise of future achievement - by mathematicians under 40.

Text size:

PHILADELPHIA, PA / ACCESS Newswire / July 23, 2026 / During today's opening ceremony at the International Congress of Mathematicians (ICM) in Philadelphia, the International Mathematical Union (IMU) announced the recipients of the 2026 Fields Medals.

This year's prizes went to four of the world's top mathematicians: Chinese mathematician Yu Deng of the University of Chicago; American mathematician John Pardon of Stony Brook University in New York; Canadian mathematician Jacob Tsimerman of the University of Toronto; and Chinese mathematician Hong Wang of New York University and France's Institut des Hautes Études Scientifiques (IHES).

The Fields Medal is often described as the Nobel Prize of mathematics due to its prestige. Awarded every four years to two to four mathematicians under the age of 40, the medal recognizes outstanding mathematical achievement in existing work and the promise of future achievement.

Each winner receives 15,000 Canadian dollars (approximately $10,600) and a gold medal bearing the visage of the Greek mathematician Archimedes.

"The four medalists exemplify the depth, originality and vitality of contemporary mathematics, and we are delighted to celebrate their achievements at the International Congress of Mathematicians," says Hiraku Nakajima, president of the IMU.

Additional Prizes Awarded

During the ceremony, the IMU also announced the winners of other top prizes in mathematics. Full citations for these prizes are available on the IMU website.

Shayan Oveis Gharan of the University of Washington received the Abacus Medal for mathematical contributions to computer science.

Graeme Segal of the University of Oxford won the Chern Medal for outstanding lifetime achievement in mathematics.

The Carl Friedrich Gauss Prize was awarded to Yurii Nesterov of Belgium's University of Louvain for mathematical contributions with significant applied applications.

Hannah Fry of the University of Cambridge was honored with the Leelavati Prize for public outreach.

About the Fields Medalists

Yu Deng

Deng was cited "for his work in partial differential equations, including the rigorous derivation of the Boltzmann equation from hard-sphere dynamics for rarefied gases, the derivation of wave kinetic equations from nonlinear dispersive systems, and probabilistic approaches to nonlinear Schrödinger dynamics."

He derived one of the most central equations in kinetic theory and fluid dynamics - the Boltzmann equation - from the mathematics of colliding hard spheres. His work is a leap forward in a centuries-long quest by mathematicians and physicists to derive the basic laws of physics from first principles - one of the famous 23 problems put forth by mathematician David Hilbert at the 1900 ICM.

John Pardon

Pardon was cited for "his achievements in symplectic geometry, including new approaches to virtual fundamental cycles, Fukaya categories of Liouville manifolds and counting holomorphic curves, and for his contributions to other areas of geometry and topology, including group actions on 3-manifolds and knot theory."

Pardon determined how to count curves on specific shapes in the field of symplectic geometry, proving the 20-year-old MNOP conjecture, which posited that two different ways of counting curves were in fact the same. Those specific shapes, called Calabi-Yau 3-folds, are thought to model our universe in superstring theory. Pardon's work has implications for representation theory, symplectic topology and quantum physics.

Jacob Tsimerman

Tsimerman was cited "for his role in the vast extension of the scope of o-minimal techniques within arithmetic and complex algebraic geometry, including the proof of Griffiths' conjecture on the algebraicity of images of the period maps."

He started by attacking big problems in number theory, using algebraic geometry to see how shapes could reveal properties of numbers. He then imported a concept known as o-minimality - a logical framework used to "tame" wild mathematical structures - from one of the most abstract fields in mathematics, model theory, into algebraic geometry, with remarkable results. In particular, his results are deeply related to the Hodge conjecture, one of the seven famous million-dollar Millennium Prize Problems.

Hong Wang

Wang was cited "for her work in harmonic analysis and geometric measure theory, including applications of multiscale and decoupling techniques to the local smoothing conjecture for the planar wave equation, and major advances in Fourier restriction, Falconer distance sets, Furstenberg sets in the plane, and the Kakeya problem in three dimensions."

Wang proved the three-dimensional version of a century-old problem that's simple to explain, yet difficult to solve: How much space does it take to turn a needle such that it points in every direction? In two dimensions, one can cleverly slide and rotate a needle in only a tiny area, but a related Kakeya problem in three dimensions proved much harder. Solving this problem has opened the door for a host of theorems and conjectures in harmonic analysis, partial differential equations, geometric measure theory and other fields. The problem remains open for dimensions four and higher.

Additional Information
The Simons Foundation, in cooperation with the IMU, created videos featuring each of this year's award winners. The embeddable videos can be viewed on YouTube.

About the International Congress of Mathematicians
The ICM is the most important and prestigious conference in the mathematical community, hosted every four years by the IMU. The 2026 congress, running from July 23 to July 30 in Philadelphia, features hundreds of invited talks, panels and presentations on cutting-edge developments across mathematics.

This year's conference is supported by the American Mathematical Society and the Simons Foundation and marks the first ICM in the United States since 1986.

About the International Mathematical Union
Founded in 1920, the IMU unites more than 80 member countries, represented through their national mathematical societies and academies. Together and through its members, the IMU encourages global collaboration and supports the development of mathematics in all regions of the world.

About the American Mathematical Society
Founded in 1888 to further mathematical research and scholarship, the American Mathematical Society fulfills its mission through programs and services that promote mathematical research and its uses, strengthen mathematical education, and foster awareness and appreciation of mathematics and its connections to other disciplines and to everyday life.

About the Simons Foundation
The Simons Foundation is a private foundation in New York City whose mission is to advance the frontiers of research in mathematics and the basic sciences. Founded in 1994 by Jim and Marilyn Simons, the foundation supports transformative science through grantmaking, in-house research and public engagement. The Simons Foundation provides grants in autism science and neuroscience; life sciences; mathematics and physical sciences; and science, society and culture. The foundation's in-house research division, the Flatiron Institute, develops and deploys computational methods to advance basic scientific research.

Contact Information

Vanessa Chung, International Mathematical Union: [email protected]
Thomas Sumner, Simons Foundation: [email protected]

SOURCE: Simons Foundation



View the original press release on ACCESS Newswire

T.Gerber--NZN