357:. He derived the exact expression for tunnelling splittings in complex systems and, by computing the exchange in quantum crystals, resolved the origin of magnetism in solid 3He. He introduced the restricted path integral method to treat Fermi statistics in finite-temperature many-body quantum systems and applied this method to the normal 3He liquid and to hydrogen under extreme conditions thus predicting the principal Hugoniot of compressed deuterium in agreement with
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373:, the fixed phase method. These are essential ingredients to make the methods quantitative and accurate. Ceperley has also introduced and developed the Coupled Electron-Ion Monte Carlo, a first- principles simulation method to perform statistical calculations of finite temperature quantum nuclei using electronic energies and has established a first-order
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Richard Martin and
Ceperley started the annual workshop series, Recent Developments in Electronic Structure Methods in 1989. Ceperley has also been an organiser of Summer Schools in Computational Materials Science. Videos of Ceperley's lectures on Quantum Monte Carlo methods can be found on YouTube.
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Ceperley has pioneered novel methods for stochastic computation of quantum systems: variational Monte Carlo techniques for fermions, the fixed-node approximation and nodal release methods, the use of
Metropolis steps to enforce reversibility in approximate Green's functions, the development of
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4He onto classical ring polymers but also created the algorithms to make path integration a precise calculational tool to compare theory with experiment. This method has enabled the elucidation of superfluid in terms of winding numbers and to reveal the deep relation between superfluidity and
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Ceperley's methods have turned the path-integral formulation of the quantum mechanics of strongly interacting many-particle systems into a precise tool to elucidate quantitatively the properties of electrons in solids, superfluids, and other complex quantum systems. His calculation, with
337:, of the equation of state of the 3 dimensional electron gas using a stochastic method has provided basic and definitive input data for numerical applications of density functional theory to electron systems. Their joint publication is one of the most cited articles in
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from 1987 to 2012. In his development as a leading mathematical and computational physicist
Ceperley had a number of acknowledged mentors, many of whom happen to be his former supervisors such as Geoffrey Chester, Malvin Kalos, Joel Lebowitz and
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Ortiz, G.; Ceperley, D. M.; Martin, R. M. (25 October 1993). "New stochastic method for systems with broken time-reversal symmetry: 2D fermions in a magnetic field".
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Ceperley, D. M.; Jacucci, G. (20 April 1987). "Calculation of exchange frequencies in bcc He with the path-integral Monte Carlo method".
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Lin, C.; Zong, F. H.; Ceperley, D. M. (18 June 2001). "Twist-averaged boundary conditions in continuum quantum Monte Carlo algorithms".
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Ceperley, D. (1 September 1978). "Ground state of the fermion one-component plasma: A Monte Carlo study in two and three dimensions".
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Reynolds, Peter J.; Ceperley, David M.; Alder, Berni J.; Lester, William A. (1982). "Fixed-node quantum Monte Carlo for molecules".
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436:(2005). He became the Founder Professor of Engineering (2006), a Center for Advanced Studies Professor (2009) and a
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Militzer, B.; Ceperley, D. M. (28 August 2000). "Path
Integral Monte Carlo Calculation of the Deuterium Hugoniot".
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Ceperley, D.; Chester, G. V.; Kalos, M. H. (1 September 1977). "Monte Carlo simulation of a many-fermion study".
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on the simulation of polymers. He was a staff scientist at the
National Resource for Computational Chemistry at
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computations, a method of calculation that is generally recognised to provide accurate quantitative results for
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1089:"Evidence for a first-order liquid-liquid transition in high-pressure hydrogen from ab initio simulations"
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Ceperley, D. M.; Dewing, M. (22 May 1999). "The penalty method for random walks with uncertain energies".
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Tanatar, B.; Ceperley, D. M. (15 March 1989). "Ground state of the two-dimensional electron gas".
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Ceperley, D. M. (1 March 1995). "Path integrals in the theory of condensed helium".
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Professor (2014) at the
University of Illinois Urbana-Champaign. He was awarded the
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USA in 1949, and attended George
Washington High School there. He was a student at
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Ceperley, D. M. (13 July 1992). "Path-integral calculations of normal liquid He".
1147:"Recent Developments in Electronic Structure | Materials Computation Center"
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Morales, M. A.; Pierleoni, C.; Schwegler, E.; Ceperley, D. M. (21 June 2010).
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Ceperley was married to Perine Davis (1950–2015); they have three children.
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University of
Michigan College of Literature, Science, and the Arts alumni
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in Wales UK, received a BS degree in physics and mathematics from the
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has been recognised by several organisations including Fellow of the
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Ceperley's pioneering work on the development and application of the
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313:. At UIUC he has been influenced by the physics Nobel Laureates
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from 1978 to 1987. Since 1987, he has been a professor at the
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Members of the United States
National Academy of Sciences
510:"Ground State of the Electron Gas by a Stochastic Method"
264:, Ann Arbor in 1971 and a PhD in theoretical physics at
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Fellows of the
American Academy of Arts and Sciences
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Recent Development of Electronic Structure Workshop
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983:(17). American Physical Society (APS): 2777–2780.
665:(16). American Physical Society (APS): 1648–1651.
836:(7). American Physical Society (APS): 3081–3099.
767:(9). American Physical Society (APS): 1890–1893.
571:(8). American Physical Society (APS): 5005–5016.
473:(7). American Physical Society (APS): 3126–3138.
508:Ceperley, D. M.; Alder, B. J. (18 August 1980).
1291:University of Illinois Urbana-Champaign faculty
1093:Proceedings of the National Academy of Sciences
716:(2). American Physical Society (APS): 331–334.
622:(2). American Physical Society (APS): 279–355.
520:(7). American Physical Society (APS): 566–569.
306:National Center for Supercomputing Applications
268:in 1976. His advisors were Geoffrey Chester at
236:or UIUC. He is a world expert in the area of
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27:American theoretical physicist (born 1949)
1316:People educated at a United World College
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1296:Fellows of the American Physical Society
1190:"Recent Progress in Many Body Theories"
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302:University of Illinois Urbana-Champaign
234:University of Illinois Urbana-Champaign
298:Lawrence Livermore National Laboratory
1281:People from Charleston, West Virginia
430:American Academy of Arts and Sciences
294:Lawrence Berkeley National Laboratory
97:American Academy of Arts and Sciences
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432:(1999) and elected member of the US
1271:People educated at Atlantic College
420:for many-body physics (1994), the
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879:(11). AIP Publishing: 5593–5603.
448:(Lausanne, Switzerland) in 2016.
424:for Computational Physics of the
232:in the physics department at the
1256:21st-century American physicists
328:Major professional contributions
244:described by quantum mechanics.
1028:The Journal of Chemical Physics
873:The Journal of Chemical Physics
418:Eugene Feenberg Memorial Medal
106:Eugene Feenberg Memorial Medal
1:
1192:. Indiana.edu. Archived from
228:(born 1949) is a theoretical
1225:Ceperley lectures on YouTube
1149:. Mcc.uiuc.edu. 3 April 2014
434:National Academy of Sciences
102:National Academy of Sciences
997:10.1103/physrevlett.71.2777
791:10.1103/physrevlett.85.1890
679:10.1103/physrevlett.58.1648
389:Selected honours and awards
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1242:Berni J. Alder CECAM prize
938:10.1103/physreve.64.016702
730:10.1103/physrevlett.69.331
534:10.1103/physrevlett.45.566
379:metal-insulator transition
355:Bose-Einstein condensation
344:Ceperley not only applied
304:and a staff member at the
248:Life, education and career
1286:Cornell University alumni
1233:13 September 2016 at the
636:10.1103/revmodphys.67.279
616:Reviews of Modern Physics
426:American Physical Society
414:American Physical Society
399:quantum many-body systems
395:path integral Monte Carlo
254:Charleston, West Virginia
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92:American Physical Society
65:Charleston, West Virginia
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1276:Computational physicists
850:10.1103/physrevb.16.3081
585:10.1103/physrevb.39.5005
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428:(1998), a fellow of the
410:under extreme conditions
272:and Malvin Kalos at the
1237:Feenberg Memorial Medal
1106:10.1073/pnas.1007309107
977:Physical Review Letters
761:Physical Review Letters
710:Physical Review Letters
659:Physical Review Letters
514:Physical Review Letters
339:Physical Review Letters
288:, where he worked with
371:time-reversal symmetry
262:University of Michigan
226:David Matthew Ceperley
204:University of Illinois
153:University of Michigan
100:Elected member of the
367:Diffusion Monte Carlo
252:Ceperley was born in
1196:on 13 September 2016
1178:– via YouTube.
422:Aneesur Rahman Prize
381:of liquid hydrogen.
348:'s exact mapping of
110:Aneesur Rahman Prize
82:Professor of Physics
1099:(29): 12799–12803.
1050:1999JChPh.110.9812C
989:1993PhRvL..71.2777O
930:2001PhRvE..64a6702L
842:1977PhRvB..16.3081C
783:2000PhRvL..85.1890M
722:1992PhRvL..69..331C
671:1987PhRvL..58.1648C
628:1995RvMP...67..279C
577:1989PhRvB..39.5005T
526:1980PhRvL..45..566C
479:1978PhRvB..18.3126C
365:importance-sampled
282:New York University
278:New York University
238:Quantum Monte Carlo
214:Quantum Monte Carlo
140:Theoretical Physics
120:Academic background
286:Rutgers University
270:Cornell University
266:Cornell University
242:many-body problems
157:Cornell University
1034:(20): 9812–9820.
908:Physical Review E
830:Physical Review B
565:Physical Review B
467:Physical Review B
403:superfluid helium
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34:David M. Ceperley
18:David M. Ceperley
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319:John Bardeen
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200:Institutions
185:John Bardeen
168:Malvin Kalos
1311:1949 births
442:Berni Alder
438:Blue Waters
397:method for
335:Berni Alder
311:Berni Alder
181:Berni Alder
134:Mathematics
71:Nationality
1250:Categories
452:References
401:, such as
359:shock wave
350:superfluid
148:Alma mater
55:1949-01-01
1115:0027-8424
1066:0021-9606
1005:0031-9007
946:1063-651X
893:0021-9606
858:0556-2805
799:0031-9007
738:0031-9007
687:0031-9007
644:0034-6861
593:0163-1829
542:0031-9007
495:0163-1829
444:prize by
230:physicist
125:Education
1231:Archived
1133:20566888
1013:10054773
954:11461437
815:16423777
807:10970640
746:10046646
695:10034498
550:55620379
407:hydrogen
74:American
1124:2919906
1074:8091933
1046:Bibcode
985:Bibcode
962:8494735
926:Bibcode
838:Bibcode
779:Bibcode
718:Bibcode
667:Bibcode
624:Bibcode
601:9948889
573:Bibcode
522:Bibcode
475:Bibcode
377:in the
346:Feynman
138:Ph.D.,
136:(1971)
130:Physics
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87:Awards
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1036:arXiv
958:S2CID
916:arXiv
811:S2CID
769:arXiv
546:S2CID
446:CECAM
79:Title
1202:2014
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405:and
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