activity
20082022
most citedTwo-photon interference from a quantum dot--microcavity: Persistent pure-dephasing and suppression of time-jitter

37 citations · 90 across the 10 of their papers we have counts for

collaborators
Showing quant-phShow all

14 papers · 1 filter

quant-ph2021

Non-Markovian perturbation theories for phonon effects in strong-coupling cavity quantum electrodynamics

Matias Bundgaard-Nielsen, Jesper Mørk, Emil Vosmar Denning

Phonon interactions are inevitable in cavity quantum electrodynamical systems based on solid-state emitters or fluorescent molecules, where vibrations of the lattice or chemical bo…

quant-ph2020

Quantum Langevin approach for superradiant nanolasers

Igor Protsenko, Alexander Uskov, Emil C. André +2

A new approach for analytically solving quantum nonlinear Langevin equations is proposed and applied to calculations of spectra of superradiant lasers where collective effects play…

quant-ph2020

Unidirectional Quantum Transport in Optically Driven -type Quantum Dot Chains

Oliver Kaestle, Emil Vosmar Denning, Jesper Mørk +2

We predict a mechanism for achieving complete population inversion in a continuously driven InAs/GaAs semiconductor quantum dot featuring -type transitions. This highly nonequil…

quant-ph2020

Electron-phonon decoupling due to strong light-matter interactions

Emil V. Denning, Matias Bundgaard-Nielsen, Jesper Mork

Phonon interactions in solid-state photonics systems cause intrinsic quantum decoherence and often present the limiting factor in emerging quantum technology. Due to recent develop…

quant-ph2019

Quantum light-matter interaction and controlled phonon scattering in a photonic Fano cavity

Emil V Denning, Jake Iles-Smith, Jesper Mork

The Fano effect arises from the interference between a continuum of propagating modes and a localised resonance. By using this resonance as one of the mirrors in an optical cavity,…

quant-ph2019

Collective quantum memory activated by a driven central spin

Emil V. Denning, Dorian A. Gangloff, Mete Atatüre +2

Coupling a qubit coherently to an ensemble is the basis for collective quantum memories. A driven quantum dot can deterministically excite low-energy collective modes of a nuclear…