Joerg Schmiedmayer

About Joerg Schmiedmayer

Joerg Schmiedmayer, With an exceptional h-index of 89 and a recent h-index of 47 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of Quantum Physics, Quantum Technologies, quantum many-body systems, non equilibrium, Atom Chips.

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

Whitham approach to Generalized Hydrodynamics

Squeezing oscillations in a multimode bosonic Josephson junction

Systematic analysis of relative phase extraction in one-dimensional Bose gases interferometry

Self-Induced Superradiant Masing

Matter-wave interferometers with trapped strongly interacting Feshbach molecules

Hydrogen crystals reduce dissipation in superconducting resonators

Determination of dynamical quantum phase transitions for boson systems using the Loschmidt cumulants method

Hamiltonian Learning in Quantum Field Theories

Joerg Schmiedmayer Information

University

Position

Vienna Center for Quantum Science and Technology

Citations(all)

29152

Citations(since 2020)

9055

Cited By

24075

hIndex(all)

89

hIndex(since 2020)

47

i10Index(all)

229

i10Index(since 2020)

142

Email

University Profile Page

Google Scholar

Joerg Schmiedmayer Skills & Research Interests

Quantum Physics

Quantum Technologies

quantum many-body systems

non equilibrium

Atom Chips

Top articles of Joerg Schmiedmayer

Whitham approach to Generalized Hydrodynamics

Physical Review Research

2024/3/27

Squeezing oscillations in a multimode bosonic Josephson junction

Physical Review X

2024/3/15

Systematic analysis of relative phase extraction in one-dimensional Bose gases interferometry

arXiv preprint arXiv:2403.05528

2024/3/8

Self-Induced Superradiant Masing

arXiv preprint arXiv:2402.08537

2024/2/13

Matter-wave interferometers with trapped strongly interacting Feshbach molecules

arXiv preprint arXiv:2402.05092

2024/2/7

Hydrogen crystals reduce dissipation in superconducting resonators

Physical Review B

2024/2/6

Determination of dynamical quantum phase transitions for boson systems using the Loschmidt cumulants method

Physical Review A

2024/1/8

Hamiltonian Learning in Quantum Field Theories

arXiv preprint arXiv:2401.01308

2024/1/2

Experimental observation of curved light-cones in a quantum field simulator

Proceedings of the National Academy of Sciences

2023/5/23

Optimizing optical potentials with physics-inspired learning algorithms

Physical Review Applied

2023/4/28

Testing collapse models with Bose-Einstein-condensate interferometry

Physical Review A

2023/4/24

Optimal control of quasi-1D Bose gases in optical box potentials

IFAC-PapersOnLine

2023/1/1

Identifying diffusive length scales in one-dimensional Bose gases

arXiv preprint arXiv:2312.14007

2023/12/21

Generalized hydrodynamics: a perspective

arXiv preprint arXiv:2311.03438

2023/11/6

Triggered superradiance and spin inversion storage in a hybrid quantum system

Physical Review Letters

2023/7/25

Emergent Pauli blocking in a weakly interacting Bose gas

Physical Review X

2022/12/22

Iterative shaping of optical potentials for one-dimensional Bose-Einstein condensates

2022/12/6

Floquet engineering a bosonic Josephson junction

Physical Review Letters

2022/8/16

Observation of light-induced dipole-dipole forces in ultracold atomic gases

Physical Review X

2022/7/27

See List of Professors in Joerg Schmiedmayer University(Technische Universität Wien)

Co-Authors

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