activity
20162018
most citedAccessing the dark exciton spin in deterministic quantum-dot microlenses

36 citations · 67 across the 2 of their papers we have counts for

collaborators

8 papers

cond-mat.mes-hall2018

Wigner time delay induced by a single quantum dot

Max Strauß, Alexander Carmele, Marcel Hohn +5

Resonant scattering of weak coherent laser pulses on a single two-level system (TLS) realized in a semiconductor quantum dot is investigated with respect to a time delay between in…

cond-mat.mes-hall2018

Generation of maximally entangled states and coherent control in quantum dot microlenses

Samir Bounouar, Christoph de la Haye, Max Strauß +7

The integration of entangled photon emitters in nanophotonic structures designed for the broadband enhancement of photon extraction is a major challenge for quantum information tec…

cond-mat.mes-hall2017

Quantum-optical spectroscopy of a two-level system using an electrically driven micropillar laser as resonant excitation source

Sören Kreinberg, Tomislav Grbešic, Max Strauß +6

Two-level emitters constitute main building blocks of photonic quantum systems and are model systems for the exploration of quantum optics in the solid state. Most interesting is t…

quant-ph2017

Correlations of cascaded photons: An analytical study in the two-photon Mollow regime

Alexander Carmele, Samir Bounouar, Max Strauß +2

Mollow physics in the two-photon regime shows interesting features such as path-controlled time-reordering of photon pairs without the need to delay them. Here, we calculate analyt…

quant-ph2017★ 36 cited

Accessing the dark exciton spin in deterministic quantum-dot microlenses

Tobias Heindel, Alexander Thoma, Ido Schwartz +11

The dark exciton state in semiconductor quantum dots constitutes a long-lived solid-state qubit which has the potential to play an important role in implementations of solid-state…

cond-mat.mes-hall2016★ 31 cited

Resonance fluorescence of a site-controlled quantum dot realized by the buried-stressor growth technique

Max Strauss, Arsenty Kaganskiy, Robert Voigt +5

Site-controlled growth of semiconductor quantum dots (QDs) represents a major advancement to achieve scalable quantum technology platforms. One immediate benefit is the determinist…