Skip to menu Skip to content Skip to footer

2026

Journal Article

Particle-hole origin of thermal beating in dipole-compression modes of a one-dimensional Bose gas

Mauron, Caroline, Kheruntsyan, Karen V. and De Rosi, Giulia (2026). Particle-hole origin of thermal beating in dipole-compression modes of a one-dimensional Bose gas. Physical Review Research, 8 (3) L032003. doi: 10.1103/hfjf-7xzr

Particle-hole origin of thermal beating in dipole-compression modes of a one-dimensional Bose gas

2026

Journal Article

Enhanced performance of sudden-quench quantum Otto cycles via multiparameter control

Watson, R. S. and Kheruntsyan, K. V. (2026). Enhanced performance of sudden-quench quantum Otto cycles via multiparameter control. Physical Review A, 113 (6) 063319, 6. doi: 10.1103/jx94-zymm

Enhanced performance of sudden-quench quantum Otto cycles via multiparameter control

2026

Journal Article

Bell correlations between momentum-entangled pairs of 4He* atoms

Athreya, Y. S., Kannan, S., Yan, X. T., Lewis-Swan, R. J., Kheruntsyan, K. V., Truscott, A. G. and Hodgman, S. S. (2026). Bell correlations between momentum-entangled pairs of 4He* atoms. Nature Communications, 17 (1) 2357, 1-7. doi: 10.1038/s41467-026-69070-3

Bell correlations between momentum-entangled pairs of 4He* atoms

2025

Journal Article

Universal principles for sudden-quench quantum Otto engines

Watson, R. S. and Kheruntsyan, K. V. (2025). Universal principles for sudden-quench quantum Otto engines. Physical Review E, 112 (3) 034120. doi: 10.1103/h1mn-th94

Universal principles for sudden-quench quantum Otto engines

2025

Journal Article

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

Watson, Raymon S. and Kheruntsyan, Karen (2025). Quantum many-body thermal machines enabled by atom-atom correlations. SciPost Physics, 18 (6) 190, 1-23. doi: 10.21468/scipostphys.18.6.190

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

2024

Journal Article

Maxwell relation between entropy and atom-atom pair correlation

Watson, Raymon S., Coleman, Caleb and Kheruntsyan, Karen V. (2024). Maxwell relation between entropy and atom-atom pair correlation. Physical Review Letters, 133 (10) 100403, 1-8. doi: 10.1103/physrevlett.133.100403

Maxwell relation between entropy and atom-atom pair correlation

2024

Journal Article

Analytic thermodynamic properties of the Lieb-Liniger gas

Kerr, Matthew L., De Rosi, Giulia and Kheruntsyan, Karen (2024). Analytic thermodynamic properties of the Lieb-Liniger gas. SciPost Physics Core, 7 (3) 047, 1-54. doi: 10.21468/scipostphyscore.7.3.047

Analytic thermodynamic properties of the Lieb-Liniger gas

2024

Journal Article

A finite-time quantum Otto engine with tunnel coupled one-dimensional Bose gases

Nautiyal, Vijit Vinod, Watson, Raymon S. and Kheruntsyan, Karen V. (2024). A finite-time quantum Otto engine with tunnel coupled one-dimensional Bose gases. New Journal of Physics, 26 (6) 063033. doi: 10.1088/1367-2630/ad57e5

A finite-time quantum Otto engine with tunnel coupled one-dimensional Bose gases

2024

Journal Article

How to measure the free energy and partition function from atom-atom correlations

Kerr, Matthew L. and Kheruntsyan, Karen V. (2024). How to measure the free energy and partition function from atom-atom correlations. Physical Review A, 109 (3) 033308. doi: 10.1103/physreva.109.033308

How to measure the free energy and partition function from atom-atom correlations

2023

Journal Article

The theory of generalised hydrodynamics for the one-dimensional Bose gas

Kerr, Matthew L. and Kheruntsyan, Karen V. (2023). The theory of generalised hydrodynamics for the one-dimensional Bose gas. AAPPS Bulletin, 33 (1) 25, 1-19. doi: 10.1007/s43673-023-00095-2

The theory of generalised hydrodynamics for the one-dimensional Bose gas

2023

Journal Article

Fate of the vacuum point and of gray solitons in dispersive quantum shock waves in a one-dimensional Bose gas

Simmons, S. A., Pillay, J. C. and Kheruntsyan, K. V. (2023). Fate of the vacuum point and of gray solitons in dispersive quantum shock waves in a one-dimensional Bose gas. Physical Review A, 108 (1) 013317. doi: 10.1103/physreva.108.013317

Fate of the vacuum point and of gray solitons in dispersive quantum shock waves in a one-dimensional Bose gas

2023

Journal Article

Benchmarks of generalized hydrodynamics for one-dimensional Bose gases

Watson, R. S., Simmons, S. A. and Kheruntsyan, K. V. (2023). Benchmarks of generalized hydrodynamics for one-dimensional Bose gases. Physical Review Research, 5 (2) L022024, 1-8. doi: 10.1103/physrevresearch.5.l022024

Benchmarks of generalized hydrodynamics for one-dimensional Bose gases

2023

Journal Article

Frequency beating and damping of breathing oscillations of a harmonically trapped one-dimensional quasicondensate

Bayocboc, Jr., Francis A. and Kheruntsyan, Karen V. (2023). Frequency beating and damping of breathing oscillations of a harmonically trapped one-dimensional quasicondensate. Comptes Rendus Physique, 24 (S3), 1-24. doi: 10.5802/crphys.131

Frequency beating and damping of breathing oscillations of a harmonically trapped one-dimensional quasicondensate

2022

Journal Article

A matter-wave Rarity–Tapster interferometer to demonstrate non-locality

Thomas, Kieran F., Henson, Bryce M., Wang, Yu, Lewis-Swan, Robert J., Kheruntsyan, Karen V., Hodgman, Sean S. and Truscott, Andrew G. (2022). A matter-wave Rarity–Tapster interferometer to demonstrate non-locality. European Physical Journal D, 76 (12) 244, 1-18. doi: 10.1140/epjd/s10053-022-00551-y

A matter-wave Rarity–Tapster interferometer to demonstrate non-locality

2022

Journal Article

Phase-space stochastic quantum hydrodynamics for interacting Bose gases

Simmons, S. A., Pillay, J. C. and Kheruntsyan, K. V. (2022). Phase-space stochastic quantum hydrodynamics for interacting Bose gases. Physical Review A, 106 (4) 043309, 1-22. doi: 10.1103/physreva.106.043309

Phase-space stochastic quantum hydrodynamics for interacting Bose gases

2022

Journal Article

Dynamics of thermalization of two tunnel-coupled one-dimensional quasicondensates

Bayocboc, F. A., Davis, M. J. and Kheruntsyan, K. V. (2022). Dynamics of thermalization of two tunnel-coupled one-dimensional quasicondensates. Physical Review A, 106 (2) 023320, 1-14. doi: 10.1103/physreva.106.023320

Dynamics of thermalization of two tunnel-coupled one-dimensional quasicondensates

2021

Journal Article

Thermalization of a quantum Newton's cradle in a one-dimensional quasicondensate

Thomas, Kieran F., Davis, Matthew J. and Kheruntsyan, Karen V. (2021). Thermalization of a quantum Newton's cradle in a one-dimensional quasicondensate. Physical Review A, 103 (2) 023315. doi: 10.1103/physreva.103.023315

Thermalization of a quantum Newton's cradle in a one-dimensional quasicondensate

2020

Journal Article

What is a Quantum Shock Wave?

Simmons, S. A., Bayocboc, F. A., Pillay, J. C., Colas, D., McCulloch, I. P. and Kheruntsyan, K. V. (2020). What is a Quantum Shock Wave?. Physical Review Letters, 125 (18) 180401, 1-6. doi: 10.1103/physrevlett.125.180401

What is a Quantum Shock Wave?

2020

Journal Article

Nonequilibrium quantum thermodynamics of determinantal many-body systems: Application to the Tonks-Girardeau and ideal Fermi gases

Atas, Y. Y., Safavi-Naini, A. and Kheruntsyan, K. V. (2020). Nonequilibrium quantum thermodynamics of determinantal many-body systems: Application to the Tonks-Girardeau and ideal Fermi gases. Physical Review A, 102 (4) 043312, 1-17. doi: 10.1103/physreva.102.043312

Nonequilibrium quantum thermodynamics of determinantal many-body systems: Application to the Tonks-Girardeau and ideal Fermi gases

2020

Journal Article

Atomic twin beams and violation of a motional-state Bell inequality from a phase-fluctuating quasicondensate source

Lewis-Swan, R. J. and Kheruntsyan, K. V. (2020). Atomic twin beams and violation of a motional-state Bell inequality from a phase-fluctuating quasicondensate source. Physical Review A, 101 (4) 043615. doi: 10.1103/physreva.101.043615

Atomic twin beams and violation of a motional-state Bell inequality from a phase-fluctuating quasicondensate source