activity
20122016
most citedDesign and analysis of photonic crystal coupled cavity arrays for quantum simulation

97 citations · 318 across the 7 of their papers we have counts for

collaborators

13 papers

physics.optics2016★ 25 cited

Tuning the Photon Statistics of a Strongly Coupled Nanophotonic System

Constantin Dory, Kevin A. Fischer, Kai Müller +7

We investigate the dynamics of single- and multi-photon emission from detuned strongly coupled systems based on the quantum-dot-photonic-crystal resonator platform. Transmitting li…

cond-mat.mes-hall2015★ 48 cited

Complete Coherent Control of a Quantum Dot Strongly Coupled to a Nanocavity

Constantin Dory, Kevin A. Fischer, Kai Müller +6

Strongly coupled quantum dot-cavity systems provide a non-linear configuration of hybridized light-matter states with promising quantum-optical applications. Here, we investigate t…

cond-mat.mes-hall2015★ 20 cited

Self-homodyne enabled generation of indistinguishable photons

Kai Müller, Kevin A. Fischer, Constantin Dory +5

The rapid generation of non-classical light serves as the foundation for exploring quantum optics and developing applications such as secure communication or generation of NOON-sta…

cond-mat.mes-hall2015★ 49 cited

Self-homodyne measurement of a dynamic Mollow triplet in the solid state

Kevin A. Fischer, Kai Müller, Armand Rundquist +6

The study of light-matter interaction at the quantum scale has been enabled by the cavity quantum electrodynamics (CQED) architecture, in which a quantum two-level system strongly…

cond-mat.mes-hall2015★ 65 cited

Ultrafast polariton-phonon dynamics of strongly coupled quantum dot-nanocavity systems

Kai Müller, Kevin A. Fischer, Armand Rundquist +6

We investigate the influence of exciton-phonon coupling on the dynamics of a strongly coupled quantum dot-photonic crystal cavity system and explore the effects of this interaction…

cond-mat.mes-hall2014

Coherent generation of nonclassical light on chip via detuned photon blockade

Kai Müller, Armand Rundquist, Kevin A. Fischer +7

The on-chip generation of non-classical states of light is a key-requirement for future optical quantum hardware. In solid-state cavity quantum electrodynamics, such non-classical…