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20162021
most citedOpto-Mechanical Tuning of the Polarization Properties of Micropillar Cavity Systems with embedded Quantum Dots

14 citations · 14 across the 3 of their papers we have counts for

collaborators

7 papers

quant-ph2021

Device-independent quantum key distribution based on Bell inequalities with more than two inputs and two outputs

Junior R. Gonzales-Ureta, Ana Predojević, Adán Cabello

Device-independent quantum key distribution (DI-QKD) offers the strongest form of security against eavesdroppers bounded by the laws of quantum mechanics. However, a practical impl…

physics.app-ph2020

Technological implementation of a photonic Bier-Glass cavity

Jonathan Jurkat, Magdalena Moczała-Dusanowska, Martin Arentoft Jacobsen +5

In this paper, we introduce a novel quantum photonic device, which we term photonic Bier-Glass cavity. We discuss its fabrication and functionality, which is based on the coupling…

quant-ph2020

Effect of source statistics on utilizing photon entanglement in quantum key distribution

Radim Hošák, Ivo Straka, Ana Predojević +2

A workflow for evaluation of entanglement source quality is proposed. Based on quantum state density matrices obtained from theoretical models and experimental data, we make an est…

cond-mat.mes-hall2020★ 14 cited

Opto-Mechanical Tuning of the Polarization Properties of Micropillar Cavity Systems with embedded Quantum Dots

Stefan Gerhardt, Magdalena Moczała-Dusanowska, Łukasz Dusanowski +7

Strain tuning emerged as an appealing tool to tune fundamental optical properties of solid state quantum emitters. In particular, the wavelength and fine structure of quantum dot s…

cond-mat.mes-hall2018

Polarization dependent light-matter coupling and highly indistinguishable resonance fluorescence photons from quantum dot-micropillar cavities with elliptical cross-section

Stefan Gerhardt, Michael Deppisch, Simon Betzold +5

We study the optical properties of coupled quantum dot-microcavity systems with elliptical cross section. First, we develop an analytic model that describes the spectrum of the cav…

quant-ph2017

Interfacing a quantum dot with a spontaneous parametric down-conversion source

Tobias Huber, Maximilian Prilmüller, Michael Sehner +3

Quantum networks require interfacing stationary and flying qubits. These flying qubits are usually nonclassical states of light. Here we consider two of the leading source technolo…