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Highlights of his research includes a theory of finite size effects in nano-superconductors and its experimental demonstration, the development of a novel theory of defect formation in dynamical phase transitions, a semiclassical analytical description of the Anderson metal-insulator transition and his recent proposals of a novel form of quantum matter based on Efimov physics.
Two of the main themes of his current research are the physics of the Sachdev-Ye-Kitaev model, a simple model of strongly interacting fermions in a quantum dot which has a gravity dual, and low dimensional superconductivity with a special emphasis on quantum coherence effects that may be employed in the design of superconducting materials with high tunable properties.
Two of the main themes of his current research are the physics of the Sachdev-Ye-Kitaev model, a simple model of strongly interacting fermions in a quantum dot which has a gravity dual, and low dimensional superconductivity with a special emphasis on quantum coherence effects that may be employed in the design of superconducting materials with high tunable properties.
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arxiv(2024)
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PHYSICAL REVIEW LETTERSno. 6 (2024): 061603-061603
arxiv(2023)
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arXiv (Cornell University) (2023)
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arXiv (Cornell University) (2023)
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