John E. Thomas

John E. Thomas

North Carolina State University

H-index: 51

North America-United States

About John E. Thomas

John E. Thomas, With an exceptional h-index of 51 and a recent h-index of 24 (since 2020), a distinguished researcher at North Carolina State University, specializes in the field of Atom cooling, quantum optics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Energy-resolved spin correlation measurements: Decoding transverse spin dynamics in weakly interacting Fermi gases

Universal Hydrodynamic Transport Times in the Normal Phase of a Unitary Fermi Gas

Collective dynamical Fermi suppression of optically-induced inelastic scattering

Verifying a quasiclassical spin model of perturbed quantum rewinding in a Fermi gas

Decoding transverse spin dynamics by energy-resolved correlation measurement

Searching for Breakdowns of Classical Spin Rotation Models in Weakly-Interacting Fermi Gases

Weakly-Interacting Fermi Gases as Chains of Interacting Spins

Fermi gas hydrodynamics in perfect box potentials

John E. Thomas Information

University

Position

Physics Department

Citations(all)

11646

Citations(since 2020)

1897

Cited By

10449

hIndex(all)

51

hIndex(since 2020)

24

i10Index(all)

97

i10Index(since 2020)

46

Email

University Profile Page

North Carolina State University

Google Scholar

View Google Scholar Profile

John E. Thomas Skills & Research Interests

Atom cooling

quantum optics

Top articles of John E. Thomas

Title

Journal

Author(s)

Publication Date

Energy-resolved spin correlation measurements: Decoding transverse spin dynamics in weakly interacting Fermi gases

Physical Review A

Jingjing Huang

JE Thomas

2024/4/10

Universal Hydrodynamic Transport Times in the Normal Phase of a Unitary Fermi Gas

arXiv preprint arXiv:2402.14104

Xiang Li

J Huang

JE Thomas

2024/2/21

Collective dynamical Fermi suppression of optically-induced inelastic scattering

arXiv preprint arXiv:2401.15162

Camen A Royse

J Huang

JE Thomas

2024/1/26

Verifying a quasiclassical spin model of perturbed quantum rewinding in a Fermi gas

Physical Review A

J Huang

Camen A Royse

I Arakelyan

JE Thomas

2023/10/20

Decoding transverse spin dynamics by energy-resolved correlation measurement

arXiv preprint arXiv:2309.07226

J Huang

JE Thomas

2023/9/13

Searching for Breakdowns of Classical Spin Rotation Models in Weakly-Interacting Fermi Gases

APS Division of Atomic, Molecular and Optical Physics Meeting Abstracts

Jingjing Huang

Ilya Arakelyan

John Thomas

Camen Royse

2023

Weakly-Interacting Fermi Gases as Chains of Interacting Spins

APS Division of Atomic, Molecular and Optical Physics Meeting Abstracts

Camen Royse

John Thomas

Ilya Arakelyan

Jingjing Huang

2023

Fermi gas hydrodynamics in perfect box potentials

APS Division of Atomic, Molecular and Optical Physics Meeting Abstracts

Xiang Li

Ilya Arakelyan

John Thomas

2023

Hydrodynamic relaxation in a strongly interacting Fermi gas

Physical Review Letters

Xin Wang

Xiang Li

Ilya Arakelyan

JE Thomas

2022/3/3

Optical Control of Interactions in an Energy-Space Spin Lattice

APS Division of Atomic, Molecular and Optical Physics Meeting Abstracts

Camen Royse

Ilya Arakelyan

John Thomas

2022

Optically-Trapped Interacting Fermi Gases

John E Thomas

2021/9/13

Information Scrambling in Energy-Space Lattices

Bulletin of the American Physical Society

Saeed Pegahan

Ilya Arakelyan

John Thomas

2021/6/3

Energy-resolved information scrambling in energy-space lattices

Physical Review Letters

S Pegahan

I Arakelyan

JE Thomas

2021/2/19

Energy-resolved information scrambling in a weakly-interacting fermi gas

gas]

S Pegahan

I Arakelyan

JE Thomas

2020/9/4

Measuring Many-body Coherence in Weakly Interacting Fermi Gases

APS Division of Atomic, Molecular and Optical Physics Meeting Abstracts

Saeed Pegahan

Ilya Arakelyan

John E Thomas

2020

See List of Professors in John E. Thomas University(North Carolina State University)