Jens Eisert

About Jens Eisert

Jens Eisert, With an exceptional h-index of 91 and a recent h-index of 65 (since 2020), a distinguished researcher at Freie Universität Berlin, specializes in the field of Many-body physics, quantum information theory, quantum technologies, quantum simulation, tensor networks.

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

Noise-induced shallow circuits and absence of barren plateaus

Topological dualities via tensor networks

Understanding quantum machine learning also requires rethinking generalization

Anyon condensation and the color code

Complexity-constrained quantum thermodynamics

Noise-mitigated randomized measurements and self-calibrating shadow estimation

Local integrals of motion and the stability of many-body localization in Wannier-Stark potentials

Towards provably efficient quantum algorithms for large-scale machine-learning models

Jens Eisert Information

University

Position

Professor of Quantum Physics at

Citations(all)

37952

Citations(since 2020)

17771

Cited By

27544

hIndex(all)

91

hIndex(since 2020)

65

i10Index(all)

287

i10Index(since 2020)

235

Email

University Profile Page

Google Scholar

Jens Eisert Skills & Research Interests

Many-body physics

quantum information theory

quantum technologies

quantum simulation

tensor networks

Top articles of Jens Eisert

Noise-induced shallow circuits and absence of barren plateaus

arXiv preprint arXiv:2403.13927

2024/3/20

Topological dualities via tensor networks

Physical Review Research

2024/3/19

Understanding quantum machine learning also requires rethinking generalization

Nature Communications

2024/3/13

Elies Gil-Fuster
Elies Gil-Fuster

H-Index: 1

Jens Eisert
Jens Eisert

H-Index: 58

Anyon condensation and the color code

arXiv preprint arXiv:2212.00042

2022/11/30

Felix Thomsen
Felix Thomsen

H-Index: 6

Jens Eisert
Jens Eisert

H-Index: 58

Complexity-constrained quantum thermodynamics

arXiv preprint arXiv:2403.04828

2024/3/7

Noise-mitigated randomized measurements and self-calibrating shadow estimation

arXiv preprint arXiv:2403.04751

2024/3/7

Local integrals of motion and the stability of many-body localization in Wannier-Stark potentials

Physical Review B

2024/1/29

Towards provably efficient quantum algorithms for large-scale machine-learning models

Nature Communications

2024/1/10

Measuring out quasi-local integrals of motion from entanglement

Communications Physics

2024/1/8

Faithfully Simulating Near-Term Quantum Repeaters

PRX Quantum

2024/3/27

Typical thermalization of low-entanglement states

arXiv preprint arXiv:2403.18007

2024/3/26

Giacomo Guarnieri
Giacomo Guarnieri

H-Index: 11

Jens Eisert
Jens Eisert

H-Index: 58

Verifiable measurement-based quantum random sampling with trapped ions

arXiv preprint arXiv:2307.14424

2023/7/26

Computational advantage of quantum random sampling

2023/7/20

Jens Eisert
Jens Eisert

H-Index: 58

Quantum metrology in the finite-sample regime

arXiv preprint arXiv:2307.06370

2023/7/12

Semi-device-dependent blind quantum tomography

Quantum

2023/7/11

Jens Eisert
Jens Eisert

H-Index: 58

Generalised linear response theory for the full quantum work statistics

arXiv preprint arXiv:2307.01885

2023/7/4

Giacomo Guarnieri
Giacomo Guarnieri

H-Index: 11

Jens Eisert
Jens Eisert

H-Index: 58

The domain wall color code

arXiv preprint arXiv:2307.00054

2023/6/30

One Gate Makes Distribution Learning Hard

Physical Review Letters

2023/6/13

(Semi-)-device independently characterizing quantum temporal correlations

arXiv preprint arXiv:2305.19548

2023/5/31

Jens Eisert
Jens Eisert

H-Index: 58

Quantum complexity phase transitions in monitored random circuits

arXiv preprint arXiv:2305.15475

2023/5/24

See List of Professors in Jens Eisert University(Freie Universität Berlin)

Co-Authors

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