Sebastian Erne

About Sebastian Erne

Sebastian Erne, With an exceptional h-index of 11 and a recent h-index of 10 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of Ultracold Quantum Gases, Non-equilibrium Physics, Quantum Field Theory, Computational Physics.

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

Hamiltonian Learning in Quantum Field Theories

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

Optimizing optical potentials with physics-inspired learning algorithms

The discrete Green's function method for wave packet expansion via the free Schr\" odinger equation

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

Origin and evolution of the multiply quantized vortex instability

Floquet engineering a bosonic Josephson junction

Quantum vortex instability and black hole superradiance

Sebastian Erne Information

University

Position

Institute of Atomic and Subatomic Physics (TU Wien)

Citations(all)

1529

Citations(since 2020)

1147

Cited By

884

hIndex(all)

11

hIndex(since 2020)

10

i10Index(all)

11

i10Index(since 2020)

10

Email

University Profile Page

Google Scholar

Sebastian Erne Skills & Research Interests

Ultracold Quantum Gases

Non-equilibrium Physics

Quantum Field Theory

Computational Physics

Top articles of Sebastian Erne

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

The discrete Green's function method for wave packet expansion via the free Schr\" odinger equation

arXiv preprint arXiv:2303.09464

2023/3/16

Sebastian Erne
Sebastian Erne

H-Index: 7

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

IFAC-PapersOnLine

2023/1/1

Sebastian Erne
Sebastian Erne

H-Index: 7

Andreas Kugi
Andreas Kugi

H-Index: 25

Origin and evolution of the multiply quantized vortex instability

Physical Review Research

2022/11/14

Sebastian Erne
Sebastian Erne

H-Index: 7

Floquet engineering a bosonic Josephson junction

Physical Review Letters

2022/8/16

Quantum vortex instability and black hole superradiance

Physical Review Research

2022/8/11

Sebastian Erne
Sebastian Erne

H-Index: 7

Observation of Light-Induced Dipole-Dipole Forces in Ultracold Atomic Gases

Physical Review X

2022/7/27

Primary thermalisation mechanism of Early Universe observed from Faraday-wave scattering on liquid-liquid interfaces

arXiv preprint arXiv:2207.02199

2022/7/5

Sebastian Erne
Sebastian Erne

H-Index: 7

Bridging Effective Field Theories and Generalized Hydrodynamics

arXiv preprint arXiv:2205.15871

2022/5/31

Sebastian Erne
Sebastian Erne

H-Index: 7

Diffraction of strongly interacting molecular Bose-Einstein condensate from standing wave light pulses

SciPost Physics

2022/5/10

Qi Liang
Qi Liang

H-Index: 2

Chen Li
Chen Li

H-Index: 6

Sebastian Erne
Sebastian Erne

H-Index: 7

Sound-ring radiation of expanding vortex clusters

Physical Review Research

2022/5/6

Sebastian Erne
Sebastian Erne

H-Index: 7

Relaxation in an extended bosonic Josephson junction

Physical Review Research

2021/6/10

Sebastian Erne
Sebastian Erne

H-Index: 7

Interferometric Unruh detectors for Bose-Einstein condensates

Physical Review Letters

2020/11/20

Sebastian Erne
Sebastian Erne

H-Index: 7

Unruh and analogue Unruh temperatures for circular motion in and dimensions

Physical Review D

2020/10/13

Sebastian Erne
Sebastian Erne

H-Index: 7

Extracting the field theory description of a quantum many-body system from experimental data

Physical Review X

2020/1/29

Thomas Schweigler
Thomas Schweigler

H-Index: 13

Sebastian Erne
Sebastian Erne

H-Index: 7

See List of Professors in Sebastian Erne University(Technische Universität Wien)

Co-Authors

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