most citedEnvironment-assisted quantum control of a solid-state spin via coherent dark states

90 citations · 241 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph201615 cited

Spin readout of trapped electron qubits

Pai Peng, Clemens Matthiesen, Hartmut Häffner

We propose a scheme to read out the spin of a single electron quantum bit in a surface Paul trap using oscillating magnetic field gradients. The readout sequence is composed of coo…

quant-ph201472 cited

Direct photonic coupling of a semiconductor quantum dot and a trapped ion

H. M. Meyer, R. Stockill, M. Steiner +7

Coupling individual quantum systems lies at the heart of building scalable quantum networks. Here, we report the first direct photonic coupling between a semiconductor quantum dot…

cond-mat.mes-hall201434 cited

Frequency stabilization of the zero-phonon line of a quantum dot via phonon-assisted active feedback

Jack Hansom, Carsten H. H. Schulte, Clemens Matthiesen +2

We report on the feedback stabilization of the zero-phonon emission frequency of a single InAs quantum dot. The spectral separation of the phonon-assisted component of the resonanc…

quant-ph201490 cited

Environment-assisted quantum control of a solid-state spin via coherent dark states

Jack Hansom, Carsten H. H. Schulte, Claire Le Gall +5

Understanding the interplay between a quantum system and its environment lies at the heart of quantum science and its applications. To-date most efforts have focused on circumventi…

cond-mat.mes-hall201429 cited

Dynamics of a mesoscopic nuclear spin ensemble interacting with an optically driven electron spin

Megan J. Stanley, Clemens Matthiesen, Jack Hansom +4

The ability to discriminate between simultaneously occurring noise sources in the local environment of semiconductor InGaAs quantum dots, such as electric and magnetic field fluctu…

cond-mat.mes-hall20141 cited

Full counting statistics of quantum dot resonance fluorescence

Clemens Matthiesen, Megan J. Stanley, Maxime Hugues +2

The electronic energy levels and optical transitions of a semiconductor quantum dot are subject to dynamics within the solid-state environment. In particular, fluctuating electric…