D42, 1001 (1990). Phys.B Proc. 296. Wilczek went to Princeton as a mathematics graduate student. A70 033603 (2004). B602 307-328 (2001). 291. Lett. hep-th/9408089 [94/51] Possible Non-Regge Behavior of Electroproduction Structure Functions (with A. DeRu- jula, S.L. 236. 146. Item 263 proposes another sort of unusual quantum statistics, based on projective representations of the symmetric group, that can work in any dimension. 355. In Item 58 we showed how supersym- metric models based on the group SO(10) (or, of course, a larger group) contain a very natural mechanism for lifting the troublesome Higgs color triplet to very high mass, leaving the doublet behind. 85 5042-5045 (2000). Internal Structure of Black Holes (with F. Larsen), Phys. 363. Submission history From: Frank Wilczek [ view email ] [v1] Sun, 12 Feb 2012 15:57:10 UTC (21 KB) Frank Wilczek 1 Selected Publications of Frank Wilczek, with Brief Commentary The full bibliography has grown by accretion. 169. Lett. In 2011, Wilczek gave the George Gamow Memorial Lecture at the University of Colorado Boulder. The following version is less complete, but better organized. Why are there Analogies between Condensed Matter and Particle Theory?, Physics Today, 11 (Jan. 1998). 462.ModelsofTopologyChange(withAlfredShapereandZhaoxiXiong)hep-th1210.3545, [ MIT-CTP 4397] (October 2012) Mathematics of Gauge Theory On a few occassions I have published exploratory mathematical ideas that seemed to me espe- cially pretty or naturally connected to physics, without any immediate sense of how they might be applied. In Items 203 and 205 we show, by tough concrete calculations, how the worst aspects of the inconsistency can be relieved by enforcing full energy conservation (including gravitational self- energy). Lett. You can edit the text of your front page by clicking on the "edit" tab above. In preparing the biography, I reflected on my great good fortune in having supportive people and institutions. 229. Analysis and Synthesis 4: Limits and Supplements Physics Today 57N1 10=11 (2004). 373 Asymptotic Freedom: From Paradox to Paradigm Les Prix Nobel 100-124 (Almqvist & Wiesell International, Stockholm) (2004) Welcome to your new Drupal site! 32. He is a co-founding member of the Kosciuszko Foundation of the Collegium of Eminent Scientists of Polish Origin and Ancestry.[23]. 225. Lett. 165.CosmologyandBrokenDiscreteSymmetry(withS.Trivedi,J.PreskillandM.B.Wise), Nucl. Riemann-Einstein Structure from Volume and Gauge Symmetry, Phys. 280. 8 Selected Publications 424. Lett. Mod. 342. Frank Anthony Wilczek ( born May15, 1951) is an American theoretical physicist, mathematician and a Nobel laureate. Many choice pieces are collected in item 396. 384. Rev. In Item 99, Zee and I showed how one could extend Berrys celebrated phase to a nonabelian setting. Frank Wilczek Difficulties around the idea of spontaneous breaking of time translation symmetry in a closed quantum mechanical system are identified, and then overcome in a simple model. PHYSICIST Frank A. Wilczek won a Nobel Prize in 2004 for work he did in his 20s on a theoretical advance known as quantum chromodynamics. Item 100 started the whole subject. This mechanism established axions as a plausible dark matter candidate. 106 (2011) 050404 [MIT-CTP 4110]. Later authors including Cardy developed a very pretty renormalization group analysis of the phenomena we found here, and generalizations. [45][47], In 2012 he proposed the idea of a time crystal. Rev. ', "Kosciuszko Foundation - American Center of Polish culture - Eminent Scientists of Polish Origin and Ancestry", "Golden Plate Awardees of the American Academy of Achievement", "New honorary doctorates in science and technology Uppsala University, Sweden", "Nobel Prize Winner Frank Wilczek to lecture at CU Boulder", "Nobel physics laureate Frank Wilczek wins Templeton Prize for work on science, spirituality links", "Seeking dark matter, they detected another mystery", "Homing in on Axions?" V32, 177 (1982). 340. Lett. Phys. Frank has literary and inventive projects in the works. Frank Wilczek, A Beautiful Question: Finding Nature's Deep Design 4 likes Like "Thus far our meditation on quantum reality has revealed that the world of everyday matter, when properly understood, embodies concepts of extraordinary beauty. 356. (with M. Turner), Nature 298, 633 (1982). Rev. hep-ph/9804403 [98-29] In Item 169 we studied black holes in super- gravity, and demonstrated their dual spectrum. 14 Selected Publications 330. He has received UNESCOs Dirac Medal, the American Physical Societys Sakurai Prize, the Michelson Prize from Case Western University, and the Lorentz Medal of the Netherlands Academy for his contributions to the development of theoretical physics. Non-Fermi Liquid Fixed Point in 2+1 Dimensions, (with Chetan Nayak), Nucl. Fermi and the Elucidation of Matter Fermi Remembered ed. Rev. Item 298 is an enthusiastic brief review. of Mod. 55, 25 (1985). These are concepts in physics which he named and pioneered. Frank Wilczek is Herman Feschbach Professor of Physics at Massachusetts Institute of Technology (MIT) (2000-present). Saltatory Relaxation of the Cosmological Term in String Theory (with J. Feng, J. March-Russell, and S. Sethi) Nucl. [90/4] 299. degree from the University of Chicago and his Ph.D. from Princeton University. point of view. These are six papers I prepared for special occasions. 459. D11, 1919 (1975). Item 130 has become the standard reference on its subject matter. [91/17] 467. Lett. 455. D26, 3679 (1982). 298 QCD Made Simple Physics Today, 53N8 22-28 (2000). condmat/9711087 [97-120] Models of Condensed Matter This somewhat disparate group of papers contains my additional work in condensed matter theory, that does not fall comfortably into the earlier categories. We find a detailed match between the calculable properties of the high-density (quark) phase and the properties of the low-density (nuclear) phase one has learned to expect from phenomenology, numerics, etc. Fitch, Marlow, and Dementi, Princeton University Press; also in Int. Scaling Mount Planck 2: Base Camp Physics Today 54N11 12-13 (2001). Solar System Constraints and Signatures for Dark Matter Candidates (with L. Krauss and M. Srednicki), Phys. Frank Wilczek 7 309. 40, 279 (1977). Read more Product details Grind- hammer, Kniehl, Kramer, and Ochs 337-356 (2006). Field Corrections to Induced Statistics (with A. Goldhaber, R. MacKenzie), Mod. Since 2002, he has been an Adjunct Professor in the Centro de Estudios Cientficos of Valdivia, Chile. Some Calculable Contributions to Entanglement Entropy, (with M. Hertzberg), (July 2010) hep-th1007.0993 Phys. 49. B450, 325-331, (1999). Several other alternatives that appear to me less compelling, but also have their adherents, were also first discussed in this paper. 400. D16, 152 (1977). 386 Example of a Hidden Flavor Sector (with B. Patt and D. Tucker-Smith) hep-ph/0509295 (2005). He received his Bachelor of Science in Mathematics at the . Items 295 and 384 explore focus point supersymmetry, a promising proposal for the pattern of SUSY breaking, while item 299 is a broader discussion of the implications of low-energy supersymmetry for dark matter searches. B449, 24-29, (1999). D18, 242 (1978). [40][41], In physics, an anyon is a type of quasiparticle that occurs only in two-dimensional systems, with properties much less restricted than fermions and bosons. [91/63] Supersymmetric Phenomenology: Special Topics Items 253 and 269 continue the discussion of proton decay in unified models with low-energy supersymmetry. 24 Mod. Sum Rules for Spin-Dependent Electroproduction - Test of Relativistic Constituent Quarks (with S. Wandzura), Phys. (with J. E. Moody), Phys. Noteworthy graduates: Frank Wilczek, Nobel laureate in physics Chapter Calendar Chapter News Just for Fun Supervisors of School Security Supervisors of School Security Chapter Calendar Resources for School Security Supervisors What is Workers' Compensation? 110, 118902 (2013) See Also . It leads naturally into item 350, my lecture on receipt of the European Physics Society prize for high energy physics. Babu and J. Pati) Nucl. [15] He has been described as an agnostic[16] but tweeted in 2013 that "pantheist" is "closer to the mark". Phys. Fantastic Realities: 49 Mind Journeys and a Trip to Stockholm (World Scientific, 2006). Tippett: Frank Wilczek won the 2004 Nobel Prize in physics for his discoveries about quarks that helped illuminate our understanding of the 4 fundamental forces of nature in the Standard Model of physics though Frank Wilczek more poetically calls the Standard Model the Core Theory. hep-th/9803075 [98-20] 1: Culture Shock Physics Today 57N10 11-12 (2004). Wilczek, considered one of the world's most eminent theoretical physicists, is the Herman Feshbach professor of physics at MIT. . Treiman and A. Zee), Phys. Populated Domain Walls (with C. Nayak), Phys. Lett. Rev. 460. 317. Wilczek has made seminal contributions to fundamental particle physics, cosmology and the physics of materials. Phys. Nuclear and Subnuclear Boiling, Nature 395, 220-221 (17 September 1998). [39] In June, 2020, an international team of physicists working in Italy detected a signal that could be axions. Rev. Dimensionless Constants, Cosmology and Other Dark Matters (with M. Tegmark, A. Aguirre, and M. Rees) Phys. 75-104 in Vision of Discovery in honor of Charles Townes 90th Birthday ed. 286. Review of Speculative Disaster Scenarios at RHIC (with W. Busza, R. Jaffe, and J. Sandweiss) Rev. 457. 361. Abstract. 397. In the technical part of item 453 I returned to the analysis of level crossings in the presence of symmetry, and found some beautiful universal structure. [91/11] Kings- ley, S.B. In itself it is a clever paper, I think, but it was rapidly overtaken by the explosive development of the field. A line element that is regular through the horizon and particular well adapted to such calculations, and has other features of interest, was introduced in Item 202 (the mathematics, though not the quantum physics, of this line element has a prehistory). Rev. Standard Model Phenomenology 71, S85-S95, (1999); More Things in Heaven and Earth A celebration of Physics at the Millennium, ed. Rev. He taught at Princeton from 197481. Non-Uniqueness of Gauge Field Potentials (with S. Deser), Phys. [3], Wilczek, along with David Gross and H.David Politzer, was awarded the Nobel Prize in Physics in 2004 "for the discovery of asymptotic freedom in the theory of the strong interaction". Rev. Hawking Radiation as Tunneling (with M. Parikh) Phys. Lett. 278. Jour. When only 21 years old and a graduate student at Princeton University, in work with David Gross he defined the properties of color gluons, which hold atomic nuclei together. - See more. He had decided to sit in on a class by physics . In Item 90 Zee and I showed how baby Skyrmions, appearing in models of magnets, could be quantized as anyons. Rev. Baker, 1986. Frank Wilczek 11 [43] When Daniel Tsui and Horst Strmer discovered the fractional quantum Hall effect in 1982, Bertrand Halperin (1984) expanded the math Wilczek proposed in 1982 for fractional statistics in two dimensions to help explain it. Rev. hep-ph/9810509 [98-90] 167. He has also worked at the Institute for Advanced Study in Princeton and the Institute for Theoretical Physics at the University of California, Santa Barbara and was also a visiting professor at NORDITA. I was asked to write introductions to two great books by Hermann Weyl and Ernest Rutherford. 339. gr-qc/9807031 [98-57] States of Anyon Matter, Intl. A4, 21 (1989). Known for the discovery of asymptotic freedom, the development of quantum chromodynamics, the invention of axions, and more show submenu for For Undergraduate Students, show submenu for Mentoring Programs Information, show submenu for Pappalardo Fellowships, PhD in Physics, Statistics, and Data Science, Astrophysics Observation, Instrumentation, and Experiment, Ten keys to reality from Nobel laureate Frank Wilczek, High Density Quark Matter and the Renormalization Group in QCD with Two and Three Flavors, pure particle physics, especially connections between ambitious theoretical ideas and concrete observable phenomena (, the behavior of matter at ultra-high temperature and/or density (, the application of insights from particle physics to cosmology (, the application of field theory techniquesto condensed matter physics (. With L. Krauss and M. Rees ) Phys Constants, cosmology and other Dark Matters ( with Busza... A. 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