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From the 1 of 7 linked papers with an AI index.

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7 papers

cond-mat.quant-gas2026

Jaynes--Cummings dynamics of fermionic heteronuclear dimers in the Mott regime

R. J. Lewis-Swan, K. V. Kheruntsyan

We formulate and exactly solve a model for coherent association and dissociation of fermionic heteronuclear dimers in the deep-lattice Mott regime. Starting from the onsite three-c…

cond-mat.quant-gas2026

Particle-hole origin of thermal beating in dipole-compression modes of a 1D Bose gas

Caroline Mauron, Karen V. Kheruntsyan, Giulia De Rosi

The paper uses generalized hydrodynamics to show that dipole-compression oscillations in a trapped 1D Bose gas exhibit a thermal beating of two frequencies due to particle and hole…

cond-mat.quant-gas2026

Enhanced performance of sudden-quench quantum Otto cycles via multi-parameter control

Raymon S. Watson, Karen V. Kheruntsyan

Advances in experimental control of interacting quantum many-body systems with multiple tunable parameters-such as ultracold atomic gases and trapped ions-are driving rapid progres…

quant-ph2025

Quantum simulation of thermodynamics: Maxwell relations for pair correlations

F. Rist, R. S. Watson, H. L. Nourse +2

Quantum simulators hold enormous promise for advancing the modelling of materials and understanding emergent physics, such as high temperature superconductivity and topological ord…

cond-mat.quant-gas2025

Universal principles for sudden-quench quantum Otto engines

R. S. Watson, K. V. Kheruntsyan

We apply a simple sudden quench approximation for the unitary work strokes of a quantum Otto engine in order to provide a general analysis of its performance, applicable to arbitra…

cond-mat.quant-gas2025

Quantum many-body thermal machines enabled by atom-atom correlations

R. S. Watson, K. V. Kheruntsyan

Particle-particle correlations, characterized by Glauber's second-order correlation function,play an important role in the understanding of various phenomena in radio and optical a…