Markus Aspelmeyer

About Markus Aspelmeyer

Markus Aspelmeyer, With an exceptional h-index of 70 and a recent h-index of 51 (since 2020), a distinguished researcher at Universität Wien,

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

Hollow-core fiber loading of nanoparticles into ultra-high vacuum

Macroscopic quantum entanglement between an optomechanical cavity and a continuous field in presence of non-Markovian noise

Fast quantum interference of a nanoparticle via optical potential control

Remote sensing of a levitated superconductor with a flux-tunable microwave cavity

Gravity Mediated Entanglement between Oscillators as Quantum Superposition of Geometries

High-Q magnetic levitation and control of superconducting microspheres at millikelvin temperatures

Linear ultrastrong optomechanical interaction

Dissipative phase transitions in optomechanical systems

Markus Aspelmeyer Information

University

Position

& Austrian Academy of Sciences

Citations(all)

30876

Citations(since 2020)

13626

Cited By

23294

hIndex(all)

70

hIndex(since 2020)

51

i10Index(all)

120

i10Index(since 2020)

95

Email

University Profile Page

Google Scholar

Top articles of Markus Aspelmeyer

Hollow-core fiber loading of nanoparticles into ultra-high vacuum

Applied Physics Letters

2024/4/1

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Nikolai Kiesel
Nikolai Kiesel

H-Index: 21

Macroscopic quantum entanglement between an optomechanical cavity and a continuous field in presence of non-Markovian noise

Physical Review Research

2024/2/16

Fast quantum interference of a nanoparticle via optical potential control

Proceedings of the National Academy of Sciences

2024/1/23

Remote sensing of a levitated superconductor with a flux-tunable microwave cavity

arXiv preprint arXiv:2401.08854

2024/1/16

Peter Asenbaum
Peter Asenbaum

H-Index: 11

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Gravity Mediated Entanglement between Oscillators as Quantum Superposition of Geometries

arXiv preprint arXiv:2309.16312

2023/9/28

Andrea Di Biagio
Andrea Di Biagio

H-Index: 2

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

High-Q magnetic levitation and control of superconducting microspheres at millikelvin temperatures

Physical Review Letters

2023/7/25

Witlef Wieczorek
Witlef Wieczorek

H-Index: 16

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Linear ultrastrong optomechanical interaction

arXiv preprint arXiv:2305.16226

2023/5/25

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Dissipative phase transitions in optomechanical systems

Physical Review A

2023/5/8

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Locally mediated entanglement in linearized quantum gravity

Physical Review Letters

2023/3/10

Dry launching of silica nanoparticles in vacuum

AIP Advances

2022/12/1

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Force-Gradient Sensing and Entanglement via Feedback Cooling of Interacting Nanoparticles

Physical review letters

2022/11/2

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Klaus Hornberger
Klaus Hornberger

H-Index: 26

Verschränkung: vom Spuk zum Werkzeug: Physik‐Nobelpreis 2022

Physik in unserer Zeit

2022/11

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Tunable light-induced dipole-dipole interaction between optically levitated nanoparticles

Science

2022/8/26

Squeezed Light from a Levitated Nanoparticle at Room Temperature

Physical Review Letters

2022/7/25

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

When zeh meets feynman: How to avoid the appearance of a classical world in gravity experiments

2022/3/15

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Gravitational coupling between millimetre-sized masses: prospects for a quantum Cavendish experiment

APS March Meeting Abstracts

2022

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

A cavity optomechanical platform using levitating superconductors and Josephson microwave circuits

APS March Meeting Abstracts

2022

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

Large quantum delocalization of a levitated nanoparticle using optimal control: Applications for force sensing and entangling via weak forces

Physical Review Letters

2021/7/7

Measurement of gravitational coupling between millimetre-sized masses

Nature

2021/3/11

Markus Aspelmeyer
Markus Aspelmeyer

H-Index: 50

See List of Professors in Markus Aspelmeyer University(Universität Wien)