{"id":35367,"date":"2025-04-05T22:30:00","date_gmt":"2025-04-05T22:30:00","guid":{"rendered":"https:\/\/www.prnasia.com\/story\/archive\/4658490_AE58490_0"},"modified":"2025-04-05T22:30:00","modified_gmt":"2025-04-05T22:30:00","slug":"breakthrough-prize-announces-2025-laureates-in-life-sciences-fundamental-physics-and-mathematics","status":"publish","type":"post","link":"https:\/\/transmediavictoria.net.au\/?p=35367","title":{"rendered":"BREAKTHROUGH PRIZE ANNOUNCES 2025 LAUREATES IN LIFE SCIENCES, FUNDAMENTAL PHYSICS, AND MATHEMATICS"},"content":{"rendered":"<table name=\"logo_release\" border=\"0\" cellspacing=\"10\" cellpadding=\"5\" align=\"right\">\n<tbody>\n<tr>\n<td><img decoding=\"async\" src=\"https:\/\/mma.prnasia.com\/media2\/2658655\/Breakthrough_Prize_Logo_Logo.jpg?p=medium600\" border=\"0\" alt title=\"logo\" hspace=\"0\" vspace=\"0\" width=\"118\"><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p class=\"prntac\"><b>&#8220;Oscars<\/b><b><sup>\u00ae<\/sup><\/b><b>&nbsp;of Science&#8221; Awards Six <span class=\"xn-money\">$3 Million<\/span> Prizes<\/b><\/p>\n<p class=\"prntac\"><b>GLP-1 Diabetes and Obesity Discovery | Multiple Sclerosis Causes and Treatments | DNA Editing<\/b><\/p>\n<p class=\"prntac\"><b>Exploration of Nature at Shortest Distances&nbsp; <\/b><\/p>\n<p class=\"prntac\"><b>Proof of<\/b>&nbsp;<b>Geometric Langlands Conjecture<\/b><\/p>\n<p class=\"prntac\"><b>Special Prize Awarded to Giant of Theoretical Physics<\/b><\/p>\n<p class=\"prntac\"><b>Breakthrough Prize in Life Sciences Awarded to <\/b><b><span class=\"xn-person\">Daniel J. Drucker<\/span>, <\/b><b><span class=\"xn-person\">Joel Habener<\/span>, <span class=\"xn-person\">Jens Juul Holst<\/span>, <span class=\"xn-person\">Lotte Bjerre Knudsen<\/span> and Svetlana Mojsov;&nbsp;Alberto Ascherio and Stephen L. Hauser;&nbsp;and <span class=\"xn-person\">David R. Liu<\/span><\/b><\/p>\n<p class=\"prntac\"><b>Breakthrough Prize in Fundamental Physics Awarded to More than 13,000 Researchers from <\/b><b>ATLAS,<\/b>&nbsp;<b>CMS<\/b><b>, <\/b><b>ALICE<\/b><b>&nbsp;and <\/b><b>LHCb<\/b><b>&nbsp;Experiments at <\/b><b>CERN<\/b><\/p>\n<p class=\"prntac\"><b>Breakthrough Prize in Mathematics Awarded to<\/b>&nbsp;<b><span class=\"xn-person\">Dennis Gaitsgory<\/span><\/b><\/p>\n<p class=\"prntac\"><b>Special Breakthrough Prize in Fundamental Physics Awarded to<\/b> <b>Gerardus &#8216;t Hooft<\/b><\/p>\n<p class=\"prntac\"><b>Six New Horizons Prizes Awarded for Early-Career <\/b><b>Achievements<\/b><b>&nbsp;in Physics and Mathematics<\/b><\/p>\n<p class=\"prntac\"><b>Three Maryam Mirzakhani New Frontiers Prizes Awarded to Women Mathematicians<br \/>for Early-Career Work<\/b><\/p>\n<p class=\"prntac\"><b><i>Laureates Announced and Honored at Annual Breakthrough Prize Ceremony in <span class=\"xn-location\">Los Angeles<\/span><\/i><\/b><\/p>\n<p><span class=\"legendSpanClass\"><span class=\"xn-location\">LOS ANGELES<\/span><\/span>, <span class=\"legendSpanClass\"><span class=\"xn-chron\">April 6, 2025<\/span><\/span> \/PRNewswire\/ &#8212; The Breakthrough Prize Foundation today announced the winners of the 2025 Breakthrough Prizes, honoring scientists driving remarkable discoveries in gene editing, human diseases, the fundamental particles of the Universe and its underlying mathematical principles.<\/p>\n<p>The Breakthrough Prize \u2013 popularly known as the &#8220;Oscars<b><sup>\u00ae<\/sup><\/b> of Science&#8221; \u2013 was created to celebrate the wonders of our scientific age by founding sponsors <b><span class=\"xn-person\">Sergey Brin<\/span><\/b>, <b><span class=\"xn-person\">Priscilla Chan<\/span><\/b> and <b><span class=\"xn-person\">Mark Zuckerberg<\/span><\/b>, <b>Julia <\/b>and<b> <span class=\"xn-person\">Yuri Milner<\/span><\/b>, and <b>Anne Wojcicki<\/b>.<\/p>\n<p>Six Breakthrough Prizes of <span class=\"xn-money\">$3 million<\/span> each were awarded in Life Sciences, Fundamental Physics, and Mathematics. In addition, the foundation announced eight early-career physicists and mathematicians are sharing six <span class=\"xn-money\">$100,000<\/span> New Horizons Prizes. Three women mathematicians recently completing PhDs are each receiving a <span class=\"xn-money\">$50,000<\/span> Maryam Mirzakhani New Frontiers Prize. This year&#8217;s prize money totals <span class=\"xn-money\">$18.75 million<\/span>, bringing the amount conferred over the 14 years of the Breakthrough Prize to more than <span class=\"xn-money\">$326 million<\/span>.<\/p>\n<p>&#8220;This year&#8217;s Breakthrough Prize laureates have made amazing strides \u2013 including treatments for major diseases affecting millions of people worldwide \u2013 showing once again the transformative power of curiosity-driven basic science.&#8221;<br \/><b>\u2013 <\/b><span class=\"xn-person\">Priscilla Chan<\/span> and <span class=\"xn-person\">Mark Zuckerberg<\/span><\/p>\n<p>&#8220;The questions these laureates are asking are among the deepest questions there are \u2013 about the workings of life, the nature of the Universe and the abstract landscapes of mathematics. It&#8217;s inspiring to see scientists seeking and finding answers to these questions.&#8221;<br \/>\u2013 <span class=\"xn-person\">Yuri Milner<\/span><\/p>\n<p>&#8220;The breakthroughs being recognized this year are extraordinary \u2013 including, in my own field, amazing gene-editing technologies that&nbsp;are already&nbsp;having a big impact. I&#8217;m excited to learn more about&nbsp;the scientists&#8217; ideas across all the fields.&#8221;&nbsp;<br \/><b>\u2013&nbsp;<\/b>Anne Wojcicki<\/p>\n<p><b><u>Life Sciences <\/u><\/b><\/p>\n<p><b><span class=\"xn-person\">Daniel J. Drucker<\/span><\/b>, <b><span class=\"xn-person\">Joel Habener<\/span><\/b>, <b><span class=\"xn-person\">Jens Juul Holst<\/span><\/b>, <b><span class=\"xn-person\">Lotte Bjerre Knudsen<\/span><\/b> and <b>Svetlana Mojsov<\/b> share the Breakthrough Prize in Life Sciences. These five scientists&#8217; complementary contributions \u2013 from basic hormone discovery through physiological understanding to pharmaceutical development \u2013 have led to highly effective drugs for diabetes and obesity, ushering in a new era of <b>GLP-1<\/b> medicines for cardiometabolic disorders. Between them their breakthroughs include: the discovery of the gene encoding the GLP-1 hormone; the synthesis, isolation and characterization of the hormone&#8217;s biologically active forms; the demonstration that it is produced in the gut and stimulates insulin production; elucidation of its broader physiological roles, including control of appetite and energy homeostasis; the development of a more stable version of the hormone that continues to act in the body for days rather than hours; and its translation into a new class of drugs that is transforming the treatment of metabolic diseases affecting hundreds of millions of people worldwide.<\/p>\n<p><b><span class=\"xn-person\">Stephen L. Hauser<\/span><\/b>&nbsp;and <b>Alberto Ascherio<\/b> share the Breakthrough Prize in Life Sciences. The two researchers have transformed the understanding and treatment of <b>multiple sclerosis<\/b> (MS), a debilitating neurodegenerative disease in which the immune system attacks the insulating protein around nerve fibers. Among other contributions, Hauser overturned the scientific consensus on the mechanism of MS, identifying the immune system&#8217;s B cells as the primary driver of damage to nerve cells. He was also instrumental in the development and testing of B cell-depleting therapies, which have revolutionized modern treatment of the disease. Meanwhile, through painstaking long-term epidemiological analysis, Ascherio discovered the necessary condition for getting MS: infection with the Epstein-Barr virus (EBV). The majority of the population carries this pathogen, normally without severe effects, but Ascherio showed that contracting it raises the risk of developing MS by a factor of 32. This work opens the possibility of treating MS with antiviral drugs, and for the development of a vaccine for EBV that could effectively prevent MS altogether.<\/p>\n<p><b><span class=\"xn-person\">David R. Liu<\/span><\/b>&nbsp;is awarded the Breakthrough Prize in Life Sciences for developing two powerful, widely used&nbsp;<b>gene-editing<\/b>&nbsp;technologies. These technologies are engineered molecular machines that correct mutations in our DNA that cause genetic diseases in patients. Importantly, they do not require cutting the DNA double-helix, and thus lead to fewer unwanted outcomes. In 2016 Liu&#8217;s lab developed base editing, which corrects the single-letter &#8220;misspellings&#8221; that constitute about 30 percent of mutations known to cause genetic diseases. Then in 2019 his lab invented prime editing, which replaces whole stretches of defective DNA with a corrected version, and in principle could be used to repair nearly all&nbsp;disease-causing mutations. These technologies have already been distributed more than 20,000 times to labs around the world, resulting in thousands of published advances in research, agriculture, and biomedicine. In animals, base editing and prime editing have successfully corrected mutations to rescue blood diseases such as sickle-cell disease and beta-thalassemia, neurological disorders such as ALS and spinal muscular atrophy (SMA), muscle diseases such as muscular dystrophy and cardiomyopathies, genetic forms of blindness, genetic forms of hearing loss, several metabolic disorders, and progeria, a premature aging disease. At least 15 base editing and prime editing clinical trials have begun in five countries, with beneficial and, in some cases, life-saving results already confirmed in patients for the treatment of T-cell leukemia, sickle-cell disease, beta-thalassemia, and high cholesterol.<\/p>\n<p><b><u>Fundamental Physics<\/u><\/b><\/p>\n<p>The Breakthrough Prize in Fundamental Physics is awarded to thousands of researchers from more than 70 countries representing four experimental collaborations at <b>CERN<\/b>&#8216;s <b>Large Hadron Collider<\/b> (LHC) \u2013 <b>ATLAS<\/b>, <b>CMS<\/b>, <b>ALICE<\/b> and LHCb.<\/p>\n<p>The <span class=\"xn-money\">$3 million<\/span> prize is allocated to ATLAS (<span class=\"xn-money\">$1 million<\/span>); CMS (<span class=\"xn-money\">$1 million<\/span>), ALICE <span class=\"xn-money\">($500,000)<\/span> and LHCb <span class=\"xn-money\">($500,000)<\/span>,&nbsp;in recognition of <b>13,508<\/b> co-authors of publications based on LHC Run-2 data released between 2015 and <span class=\"xn-chron\">July 15<\/span>, 2024.&nbsp;[ATLAS \u2013 5,345 researchers; CMS \u2013 4,550; ALICE \u2013 1,869; LHCb \u2013 1,744].&nbsp;<\/p>\n<p>In consultation with the leaders of the experiments, the Breakthrough Prize Foundation will donate 100 percent of the prize funds to the <b>CERN &amp; Society Foundation<\/b>. The prize money will be used by the collaborations to offer grants for doctoral students from member institutes to spend research time at CERN, giving the students experience working at the forefront of science and new expertise to bring back to their home countries and regions.<\/p>\n<p>The four experiments are recognized for testing the modern theory of particle physics \u2013 the Standard Model&nbsp;\u2013 and other theories describing physics that might lie beyond it to high precision. This includes precisely measuring properties of the Higgs boson and elucidating the mechanism by which the Higgs field gives mass to elementary particles; probing extremely rare particle interactions, and exotic states of matter that existed in the first moments of the Universe; discovering more than 72 new hadrons and measuring subtle differences between matter and antimatter particles; and setting strong bounds on possibilities for new physics beyond the Standard Model, including dark matter, supersymmetry and hidden extra dimensions. ATLAS and CMS are general-purpose experiments, which pursue the full program of exploration offered by the LHC&#8217;s high-energy and high-intensity proton and ion beams. They synchronously announced the discovery of the Higgs boson in 2012 and continue to investigate its properties. ALICE studies the quark-gluon plasma, a state of extremely hot and dense matter that existed in the first microseconds after the Big Bang. And LHCb explores minute differences between matter and antimatter, violation of fundamental symmetries, and the complex spectra of composite particles (&#8220;hadrons&#8221;) made of heavy and light quarks. By performing these extraordinarily precise and delicate tests, the LHC experiments have pushed the boundaries of fundamental physics to unprecedented limits.<\/p>\n<p><b><u>Mathematics<\/u><\/b><\/p>\n<p><b><span class=\"xn-person\">Dennis Gaitsgory<\/span><\/b> wins the Breakthrough Prize in Mathematics for his central role in the proof of the geometric Langlands conjecture. The <b>Langlands program<\/b> is a broad research program spanning several fields of mathematics. It grew out of a series of conjectures proposing precise connections between seemingly disparate mathematical concepts. Such connections are powerful tools; for example, the proof of Fermat&#8217;s Last Theorem&nbsp;reduces to a particular&nbsp;instance&nbsp;of the Langlands conjecture. These Langlands program equivalences can be thought of as generalizations of the Fourier transform, a tool that relates waves to frequency spectrums and has widespread uses from seismology to sound engineering. In the case of the geometric Langlands conjecture, the proposed one-to-one correspondence is between two very different sets of objects, analogous to these spectrums and waves: on the spectrum side are abstract algebraic objects called representations of the fundamental group, which capture information about the kinds of loop that can wrap around certain complex surfaces; on the &#8220;wave&#8221; side are sheaves, which, loosely speaking, are rules assigning vector spaces to points on a surface. Gaitsgory has dedicated much of the last 30 years to the geometric Langlands conjecture. In 2013 he wrote an outline of the steps required for a proof, and after more than a decade of intensive research in 2024 he and his colleagues published the full proof, comprising over 800 pages spread over 5 papers. This is a monumental advance, expected to have deep implications in other areas of mathematics too, including number theory, algebraic geometry and mathematical physics.<\/p>\n<p><b><u>Special Breakthrough Prize in Fundamental Physics <\/u><\/b><\/p>\n<p><b>Gerard &#8216;t Hooft<\/b>, winner of the Special Breakthrough Prize in Fundamental Physics, is one of the world&#8217;s most pre-eminent theoretical physicists. In the early 1970s he made crucial contributions to the foundations of what would later become known as the Standard Model of the subatomic particles. He proved that Yang-Mills theories (the mathematical framework underlying theories of both the weak and strong nuclear forces) make sense when treated quantum mechanically \u2013 that they can give finite, calculable results rather than meaningless infinities \u2013 thus validating theories which became central to the Standard Model. He made several crucial contributions to understanding the theory of the strong force, including resolving a major problem involving the masses of particles through special field configurations called instantons; he developed new mathematical tools for studying strongly interacting quarks; and he introduced the fruitful approach of studying the strong force by imagining it is mediated by many more varieties of quarks and gluons than it actually is. These and other contributions helped establish the Standard Model as a workable theory and provided powerful tools for calculating its predictions. &#8216;t Hooft has studied the quantum effects that can explain how information is processed in black holes, which led to the development of the holographic principle in cosmology, and possibly to new alternative ways to interpret quantum mechanics.&nbsp;<\/p>\n<p><b><u>New Horizons in Physics Prize<\/u><\/b><\/p>\n<p>This year&#8217;s New Horizons in Physics Prizes honor early-career researchers across a wide range of fields. In atomic physics, <b><span class=\"xn-person\">Waseem Bakr<\/span> <\/b>has created quantum gas microscopes that can image individual atoms confined in an optical lattice, advancing the study of strongly interacting quantum systems. In quantum information, a field at the fertile intersection of physics, mathematics and computer science, <b>Jeongwan Haah<\/b>&nbsp;has developed&nbsp;models of emergent quantum systems \u2013macroscopic systems exhibiting quantum behavior, whose potential applications include quantum computing; these models include &#8216;Haah&#8217;s code&#8217;, which has opened the field of a class of quasi-particles called fractons. And in astronomy, <b><span class=\"xn-person\">Sebastiaan Haffert<\/span><\/b>,<b> <span class=\"xn-person\">Rebecca Jensen-Clem<\/span><\/b> and <b><span class=\"xn-person\">Maaike van Kooten<\/span><\/b> have designed and enabled novel techniques for extreme adaptive optics, which are systems that compensate for the effects of Earth&#8217;s atmosphere on light reaching terrestrial telescopes. Their work promises to enable the direct detection of the smallest exoplanets.<\/p>\n<p><b><u>New Horizons in Mathematics Prize<\/u><\/b><\/p>\n<p>Modern physics and higher mathematics share intimate connections, and it is notable that the research areas of all three of this year&#8217;s New Horizons in Mathematics Prize winners have links to quantum physics. <b>Ewain Gwynne<\/b> is recognized for his work in conformal probability, which studies probabilistic objects such as random curves and surfaces.<b> <span class=\"xn-person\">John Pardon<\/span> <\/b>has produced a number of important results in geometry and topology, particularly in the field of symplectic geometry and pseudo-holomorphic curves, which are certain types of smooth surfaces in manifolds.&nbsp;<b><span class=\"xn-person\">Sam Raskin<\/span><\/b>&nbsp;has played a significant role in the major recent progress on the geometric Langlands program (see Mathematics section above), including the final proof of the geometric Langlands conjecture in characteristic 0.<\/p>\n<p><b><u>Maryam Mirzakhani New Frontiers Prize<\/u><\/b><\/p>\n<p>The Maryam Mirzakhani New Frontiers Prize is awarded to outstanding women mathematicians who have recently completed their PhDs. <b>Si <span class=\"xn-person\">Ying Lee<\/span> <\/b>has found a new approach to an important problem in the Langlands program (see Mathematics section above), succeeding in reducing it to a local problem. <b><span class=\"xn-person\">Rajula Srivastava<\/span><\/b> has made progress in a challenging area at the intersection of harmonic analysis and number theory. Her work focuses on bounding the number of lattice points one can find near a given smooth surface, with important applications to Diophantine approximation in higher dimensions. <b><span class=\"xn-person\">Ewin Tang<\/span><\/b> has invented quantum computing algorithms for machine learning. She also proved that certain calculations, which quantum algorithms were widely considered to be exponentially faster at solving, can actually be solved in comparable time by a normal (non-quantum) computer.&nbsp;<\/p>\n<p><b>Citations for 2025 Laureates<\/b><\/p>\n<p><b><u>2025 Breakthrough Prize in Life Sciences<\/u><\/b><\/p>\n<p><b><span class=\"xn-person\">Daniel J. Drucker<\/span><br \/><\/b>Lunenfeld-Tanenbaum&nbsp;Research Institute, Sinai Health, and <span class=\"xn-org\">University of Toronto<\/span><\/p>\n<p><b><span class=\"xn-person\">Joel Habener<\/span><\/b>&nbsp;<br \/><span class=\"xn-org\">Massachusetts<\/span> General Hospital and <span class=\"xn-org\">Harvard University<\/span><\/p>\n<p><b><span class=\"xn-person\">Jens Juul Holst<\/span><\/b>&nbsp;<br \/>Novo Nordisk Foundation Center for Basic Metabolic Research and the Department of Biomedical Sciences, <span class=\"xn-org\">University of Copenhagen<\/span><\/p>\n<p><b><span class=\"xn-person\">Lotte Bjerre Knudsen<\/span><br \/><\/b>Novo Nordisk<\/p>\n<p><b>Svetlana Mojsov<br \/><\/b><span class=\"xn-org\">Rockefeller University<\/span><\/p>\n<p>For the discovery and characterization of GLP-1 and revealing its physiology and potential in treating diabetes and obesity.<\/p>\n<p><b><u>2025 Breakthrough Prize in Life Sciences<\/u><\/b><\/p>\n<p><b>Alberto Ascherio<br \/><\/b><span class=\"xn-org\">Harvard University<\/span><\/p>\n<p><b><span class=\"xn-person\">Stephen L. Hauser<\/span><br \/><\/b><span class=\"xn-org\">University of California, San Francisco<\/span><\/p>\n<p>For establishing the role of B cells in multiple sclerosis and developing B-cell based treatments, and for revealing that Epstein-Barr virus infection is the leading risk for multiple sclerosis.<\/p>\n<p><b><u>2025 Breakthrough Prize in Life Sciences<\/u><\/b><\/p>\n<p><b><span class=\"xn-person\">David R. Liu<\/span><br \/><\/b>Merkin&nbsp;Institute for Transformative Technologies in Healthcare at the Broad Institute of MIT&nbsp;and <span class=\"xn-org\">Harvard<\/span>, <span class=\"xn-org\">Harvard University<\/span>, and Howard Hughes Medical Institute<\/p>\n<p>For developing base editing and prime editing, technologies that edit the DNA of living systems without cutting the DNA double helix, and rewrite segments of genes at their native locations, enabling the correction or replacement of virtually any mutation.<\/p>\n<p><b><u>2025 Breakthrough Prize in Fundamental Physics<\/u><\/b><\/p>\n<p>The<b> ATLAS<\/b>, <b>CMS<\/b>, <b>ALICE<\/b> and <b>LHCb<\/b> Collaborations at <b>CERN<\/b>&#8216;s<b> Large Hadron Collider<\/b><\/p>\n<p>For detailed measurements of Higgs boson properties&nbsp;confirming the symmetry-breaking mechanism of mass generation, the discovery of new strongly interacting particles, the study of rare processes&nbsp;and matter-antimatter asymmetry, and the exploration of nature at the shortest distances and most extreme conditions&nbsp;at CERN&#8217;s Large Hadron Collider.<\/p>\n<p>The <span class=\"xn-money\">$3 million<\/span> prize is allocated to ATLAS (<span class=\"xn-money\">$1 million<\/span>); CMS (<span class=\"xn-money\">$1 million<\/span>), ALICE <span class=\"xn-money\">($500,000)<\/span> and LHCb <span class=\"xn-money\">($500,000)<\/span>,&nbsp;in recognition of 13,508 co-authors of publications based on LHC Run-2 data released between 2015 and <span class=\"xn-chron\">July 15<\/span>, 2024.&nbsp;[ATLAS \u2013 5,345 researchers; CMS \u2013 4,550; ALICE \u2013 1,869; LHCb \u2013 1,744].&nbsp;<\/p>\n<p>In consultation with the leaders of the experiments, the Breakthrough Prize Foundation will donate 100 percent of the prize funds to the <b>CERN &amp; Society Foundation<\/b>. The prize money will be used by the collaborations to offer grants for doctoral students from member institutes to spend research time at CERN, giving the students experience working at the forefront of science and new expertise to bring back to their home countries and regions.<\/p>\n<p>The names of each prizewinner can be found at <a href=\"https:\/\/c212.net\/c\/link\/?t=0&amp;l=en&amp;o=4399485-1&amp;h=1591697326&amp;u=https%3A%2F%2Fbreakthroughprize.org%2FLaureates%2F1&amp;a=https%3A%2F%2Fbreakthroughprize.org%2FLaureates%2F1\" target=\"_blank\" rel=\"nofollow noopener\">https:\/\/breakthroughprize.org\/Laureates\/1<\/a>.<\/p>\n<p><b><u>2025 Special Breakthrough Prize in Fundamental Physics<\/u><\/b><\/p>\n<p><b>Gerardus &#8216;t Hooft<br \/><\/b><span class=\"xn-location\">Utrecht<\/span> University<br \/>For fundamental insights into gauge theory and the standard model.<\/p>\n<p><b><u>2025 Breakthrough Prize in Mathematics<\/u><\/b><\/p>\n<p><b><span class=\"xn-person\">Dennis Gaitsgory<\/span><br \/><\/b>Max Planck Institute for Mathematics<br \/>For foundational works and numerous breakthrough contributions to the geometric Langlands program and its quantum version; in particular, the development of the derived algebraic geometry approach and the proof of the geometric Langlands conjecture in characteristic 0.<\/p>\n<p><b><u>2025 New Horizons in Mathematics Prize<\/u><\/b><\/p>\n<p><b>Ewain Gwynne<br \/><\/b><span class=\"xn-org\">University of Chicago<\/span><br \/>For contributions to conformal probability, in particular to the understanding of the LQG metric.<\/p>\n<p><b><span class=\"xn-person\">John Pardon<\/span><br \/><\/b>Stony Brook University<br \/>For contributions to symplectic topology and other areas of geometry and topology.<\/p>\n<p><b><span class=\"xn-person\">Sam Raskin<\/span><\/b><br \/><span class=\"xn-org\">Yale University<\/span><br \/>For contributions to the geometric Langlands program, including the theory of the Whittaker model and the proof of the geometric Langlands conjecture in characteristic 0.<\/p>\n<p><b><u>2025 Maryam Mirzakhani New Frontiers Prize<\/u><\/b><\/p>\n<p><b>Si <span class=\"xn-person\">Ying Lee<\/span><br \/><\/b><span class=\"xn-org\">Stanford University<\/span><br \/>(PhD <span class=\"xn-org\">Harvard University<\/span> 2022)<br \/>For contributions to the theory of Shimura varieties.<\/p>\n<p><b><span class=\"xn-person\">Rajula Srivastava<\/span><br \/><\/b>University of Bonn and Max Planck Institute for Mathematics<br \/>(PhD <span class=\"xn-org\">University of Wisconsin<\/span> 2022)<br \/>For contributions in harmonic analysis and analytic number theory, including contributions to the problem of counting rational points near smooth manifolds.<\/p>\n<p><b><span class=\"xn-person\">Ewin Tang<\/span><\/b><br \/><span class=\"xn-org\">University of California, Berkeley<\/span><br \/>(PhD <span class=\"xn-org\">University of Washington<\/span> 2023)<br \/>For developing classical analogs of quantum algorithms for machine learning and linear algebra, and for advances in quantum machine learning on quantum data.<\/p>\n<p><b><u>2025 New Horizons in Physics Prize<\/u><\/b><\/p>\n<p><b><span class=\"xn-person\">Waseem Bakr<\/span><\/b><br \/><span class=\"xn-org\">Princeton University<\/span><br \/>For the realization of quantum gas microscopes for atoms and molecules, providing a microscopic view on correlations and transport in strongly interacting quantum systems.<\/p>\n<p><b><u>2025 New Horizons in Physics Prize<br \/><\/u><\/b><\/p>\n<p><b>Jeongwan Haah<\/b><br \/><span class=\"xn-org\">Stanford University<\/span><br \/>For the discovery of Haah&#8217;s code, in which fractal conservation laws emerge, and other models bringing discrete mathematical structures to physics<\/p>\n<p><b><u>2025 New Horizons in Physics Prize<\/u><\/b><\/p>\n<p><b><span class=\"xn-person\">Sebastiaan Haffert<\/span><\/b>&nbsp;<br \/>Leiden University, Leiden Observatory and <span class=\"xn-org\">University of Arizona<\/span>, Steward Observatory<\/p>\n<p><b><span class=\"xn-person\">Rebecca Jensen-Clem<\/span><\/b><br \/><span class=\"xn-org\">University of California<\/span>, Santa Cruz&nbsp;<\/p>\n<p><b><span class=\"xn-person\">Maaike van Kooten<\/span><\/b><br \/>National Research Council Canada<br \/>For demonstrating new extreme adaptive optics techniques that will allow the direct detection of the smallest&nbsp;exoplanets.<\/p>\n<p><b>About The Breakthrough Prize<br \/><\/b>For the 13<sup>th<\/sup> year, the Breakthrough Prize, renowned as the &#8220;Oscars<b><sup>\u00ae<\/sup><\/b>&nbsp;of Science,&#8221; recognizes the world&#8217;s top scientists. Each prize is <span class=\"xn-money\">$3 million<\/span> and presented in the fields of Life Sciences, Fundamental Physics and Mathematics. In addition, up to three New Horizons in Physics Prizes, up to three New Horizons in Mathematics Prizes and up to three Maryam Mirzakhani New Frontiers Prizes are given out to early-career researchers each year. Laureates attend a gala award ceremony designed to celebrate their achievements and inspire the next generation of scientists.<\/p>\n<p>The Breakthrough Prizes were founded by <span class=\"xn-person\">Sergey Brin<\/span>, <span class=\"xn-person\">Priscilla Chan<\/span> and <span class=\"xn-person\">Mark Zuckerberg<\/span>, <span class=\"xn-person\">Julia and Yuri Milner<\/span>, and Anne Wojcicki and have been sponsored by foundations established by them. Selection Committees composed of previous Breakthrough Prize laureates in each field choose the winners. Information on the Breakthrough Prize is available at <a href=\"https:\/\/c212.net\/c\/link\/?t=0&amp;l=en&amp;o=4399485-1&amp;h=1323619649&amp;u=https%3A%2F%2Fbreakthroughprize.org%2F&amp;a=https%3A%2F%2Fbreakthroughprize.org\" target=\"_blank\" rel=\"nofollow noopener\">https:\/\/breakthroughprize.org<\/a>.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>&#8220;Oscars\u00ae&nbsp;of Science&#8221; Awards Six $3 Million Prizes GLP-1 Diabetes and Obesity Discovery | Multiple Sclerosis Causes and Treatments | DNA Editing Exploration of Nature at Shortest Distances&nbsp; Proof of&nbsp;Geometric Langlands Conjecture Special Prize Awarded to Giant of Theoretical Physics Breakthrough Prize in Life Sciences Awarded to Daniel J. Drucker, Joel Habener, Jens Juul Holst, Lotte [&hellip;]<\/p>\n","protected":false},"author":8,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[20],"tags":[],"class_list":["post-35367","post","type-post","status-publish","format-standard","hentry","category-business-news"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.9 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>BREAKTHROUGH PRIZE ANNOUNCES 2025 LAUREATES IN LIFE SCIENCES, FUNDAMENTAL PHYSICS, AND MATHEMATICS - My Blog<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/transmediavictoria.net.au\/?p=35367\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"BREAKTHROUGH PRIZE ANNOUNCES 2025 LAUREATES IN LIFE SCIENCES, FUNDAMENTAL PHYSICS, AND MATHEMATICS - My Blog\" \/>\n<meta property=\"og:description\" content=\"&#8220;Oscars\u00ae&nbsp;of Science&#8221; Awards Six $3 Million Prizes GLP-1 Diabetes and Obesity Discovery | Multiple Sclerosis Causes and Treatments | DNA Editing Exploration of Nature at Shortest Distances&nbsp; Proof of&nbsp;Geometric Langlands Conjecture Special Prize Awarded to Giant of Theoretical Physics Breakthrough Prize in Life Sciences Awarded to Daniel J. 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