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He is recognised for his research on strongly correlated states in electronic and bosonic systems, critical phenomena, and quantum Monte Carlo methods.
His and his coauthors have made key contributions to the theory of supersolids includes the theory of superfluidity of crystalline defects, such as the appearance of superfluidity on grain boundaries and in dislocation cores(reviewed in ) and superglass state.He co-invented, with Boris Svistunov and Igor Tupitsyn of the widely used Worm Monte-Carlo algorithm. With Boris Svistunov he invented the Diagrammatic Monte-Carlo method which is stochastic summation of Feynman diagrammatic series which is free from the Numerical sign problem.
He is an elected Fellow of the American Physical Society, for "pioneering contributions to theories of dissipative quantum dynamics and for innovative Monte Carlo approaches to quantum and classical studies of critical phenomena."
He coauthored the book on modern theory of superfluidity.
His and his coauthors have made key contributions to the theory of supersolids includes the theory of superfluidity of crystalline defects, such as the appearance of superfluidity on grain boundaries and in dislocation cores(reviewed in ) and superglass state.He co-invented, with Boris Svistunov and Igor Tupitsyn of the widely used Worm Monte-Carlo algorithm. With Boris Svistunov he invented the Diagrammatic Monte-Carlo method which is stochastic summation of Feynman diagrammatic series which is free from the Numerical sign problem.
He is an elected Fellow of the American Physical Society, for "pioneering contributions to theories of dissipative quantum dynamics and for innovative Monte Carlo approaches to quantum and classical studies of critical phenomena."
He coauthored the book on modern theory of superfluidity.
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arXiv (Cornell University) (2023)
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arxiv(2023)
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PHYSICAL REVIEW LETTERSno. 19 (2023): 196001-196001
PHYSICAL REVIEW Bno. 24 (2023)
PHYSICAL REVIEW Bno. 14 (2023)
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