Clemens Spinnler

Clemens Spinnler

Universität Basel

H-index: 6

Europe-Switzerland

About Clemens Spinnler

Clemens Spinnler, With an exceptional h-index of 6 and a recent h-index of 6 (since 2020), a distinguished researcher at Universität Basel, specializes in the field of Semiconductor physics, Quantum Dots, optical spectroscopy.

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

Quantum dot coupled to a suspended-beam mechanical resonator: From the unresolved-to the resolved-sideband regime

Symmetry breaking via alloy disorder to explain radiative Auger transitions in self-assembled quantum dots

Enhanced electron-spin coherence in a gaas quantum emitter

Quantum interference of identical photons from remote GaAs quantum dots

A single-photon emitter coupled to a phononic-crystal resonator in the resolved-sideband regime

Exploiting phonon and coulomb interactions in semiconductor quantum dots

Structural symmetry-breaking to explain radiative Auger transitions in self-assembled quantum dots

Optically driving the radiative Auger transition

Clemens Spinnler Information

University

Position

___

Citations(all)

259

Citations(since 2020)

257

Cited By

18

hIndex(all)

6

hIndex(since 2020)

6

i10Index(all)

6

i10Index(since 2020)

6

Email

University Profile Page

Google Scholar

Clemens Spinnler Skills & Research Interests

Semiconductor physics

Quantum Dots

optical spectroscopy

Top articles of Clemens Spinnler

Quantum dot coupled to a suspended-beam mechanical resonator: From the unresolved-to the resolved-sideband regime

Physical Review Applied

2024/3/21

Symmetry breaking via alloy disorder to explain radiative Auger transitions in self-assembled quantum dots

Physical Review B

2023/12/7

Enhanced electron-spin coherence in a gaas quantum emitter

Physical Review Letters

2023/11/22

Quantum interference of identical photons from remote GaAs quantum dots

Nature Nanotechnology

2022/8

A single-photon emitter coupled to a phononic-crystal resonator in the resolved-sideband regime

arXiv preprint arXiv:2311.05342

2023/11/9

Exploiting phonon and coulomb interactions in semiconductor quantum dots

2023

Clemens Spinnler
Clemens Spinnler

H-Index: 3

Structural symmetry-breaking to explain radiative Auger transitions in self-assembled quantum dots

arXiv preprint arXiv:2208.12069

2022/8/25

Optically driving the radiative Auger transition

Nature communications

2021/11/12

Charge tunable GaAs quantum dots in a photonic nip diode

Nanomaterials

2021/10/13

Single-Photon Radiative Auger Emission from a Quantum Dot

2021/5/9

Low-noise GaAs quantum dots in a pin diode

2021/5/9

Highly coherent single photon emission from charge tunable GaAs quantum dots

Bulletin of the American Physical Society

2021/3/16

Low-noise GaAs quantum dots for quantum photonics

Nature communications

2020/9/21

Radiative Auger process in the single-photon limit

Nature Nanotechnology

2020/7

See List of Professors in Clemens Spinnler University(Universität Basel)