Hersh Singh

Hersh Singh

Duke University

H-index: 8

North America-United States

About Hersh Singh

Hersh Singh, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Duke University, specializes in the field of quantum field theories, lattice field theory, effective field theories, quantum computing, quantum.

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

Generalized Ginsparg-Wilson relations

Cold neutron-deuteron capture and Wigner-SU (4) symmetry

Topological terms with qubit regularization and relativistic quantum circuits

Preparation for quantum simulation of the -dimensional O(3) nonlinear model using cold atoms

Quantum information science and technology for nuclear physics. Input into US Long-Range Planning, 2023

Vacuum Entanglement Harvesting in the Ising Model

Lattice regularizations of vacua: Anomalies and qubit models

Cold radiative neutron-deuteron capture and Wigner-SU (4) Symmetry

Hersh Singh Information

University

Position

Graduate Student

Citations(all)

216

Citations(since 2020)

216

Cited By

31

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

5

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Hersh Singh Skills & Research Interests

quantum field theories

lattice field theory

effective field theories

quantum computing

quantum

Top articles of Hersh Singh

Generalized Ginsparg-Wilson relations

Physical Review D

2024/1/4

Michael Clancy
Michael Clancy

H-Index: 11

Hersh Singh
Hersh Singh

H-Index: 3

Cold neutron-deuteron capture and Wigner-SU (4) symmetry

Physical Review C

2023/10/23

Hersh Singh
Hersh Singh

H-Index: 3

Topological terms with qubit regularization and relativistic quantum circuits

arXiv preprint arXiv:2310.06805

2023/10/10

Preparation for quantum simulation of the -dimensional O(3) nonlinear model using cold atoms

Physical Review A

2023/4/4

Hersh Singh
Hersh Singh

H-Index: 3

Vacuum Entanglement Harvesting in the Ising Model

arXiv preprint arXiv:2302.12858

2023/2/24

Lattice regularizations of vacua: Anomalies and qubit models

Physical Review D

2023/1/11

Hersh Singh
Hersh Singh

H-Index: 3

Cold radiative neutron-deuteron capture and Wigner-SU (4) Symmetry

APS Meeting Abstracts

2023

Hersh Singh
Hersh Singh

H-Index: 3

Floquet engineering heisenberg from ising using constant drive fields for quantum simulation

arXiv preprint arXiv:2207.09438

2022/7/19

Hersh Singh
Hersh Singh

H-Index: 3

From Asymptotic Freedom to Vacua: Qubit Embeddings of the O(3) Nonlinear Model

Physical Review Letters

2022/7/6

Hersh Singh
Hersh Singh

H-Index: 3

Qubit regularized nonlinear sigma models

Physical Review D

2022/6/17

Hersh Singh
Hersh Singh

H-Index: 3

Cold Neutron Capture on the Deuteron in Pionless Effective Field Theory

APS April Meeting Abstracts

2022/4

Hersh Singh
Hersh Singh

H-Index: 3

Spacetime symmetric qubit regularization of the asymptotically free two-dimensional model

Physical Review D

2022/3/21

Large-charge conformal dimensions at the Wilson-Fisher fixed point

arXiv preprint arXiv:2203.00059

2022/2/28

Hersh Singh
Hersh Singh

H-Index: 3

Qubit regularization of asymptotic freedom

Physical review letters

2021/4/27

Exploring digitizations of quantum fields for quantum devices

2021

Entanglement distillation from the vacuum of quantum spin chains

APS Division of Nuclear Physics Meeting Abstracts

2021

Space-time symmetric qubit regularization of asymptotically freedom

APS Division of Nuclear Physics Meeting Abstracts

2021

Qubit O (N) nonlinear sigma models and large charge effective field theories

APS Division of Nuclear Physics Meeting Abstracts

2020

Hersh Singh
Hersh Singh

H-Index: 3

See List of Professors in Hersh Singh University(Duke University)

Co-Authors

academic-engine