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Dive into the research topics where Disheng Chen is active.

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Featured researches published by Disheng Chen.


Physical Review Letters | 2017

Polarization-Dependent Interference of Coherent Scattering from Orthogonal Dipole Moments of a Resonantly Excited Quantum Dot

Disheng Chen; Gary Lander; Glenn S. Solomon; Edward Flagg

Interference between coherent scattering from the two fine structure split exciton states in a neutral InGaAs quantum dot causes an unconventional excitation line shape. Analysis allows the extraction of steady-state coherence between the exciton states.


Journal of Visualized Experiments | 2017

Resonance Fluorescence of an InGaAs Quantum Dot in a Planar Cavity Using Orthogonal Excitation and Detection

Disheng Chen; Gary Lander; Edward Flagg

The ability to perform simultaneous resonant excitation and fluorescence detection is important for quantum optical measurements of quantum dots (QDs). Resonant excitation without fluorescence detection - for example, a differential transmission measurement - can determine some properties of the emitting system, but does not allow applications or measurements based on the emitted photons. For example, the measurement of photon correlations, observation of the Mollow triplet, and realization of single photon sources all require collection of the fluorescence. Incoherent excitation with fluorescence detection - for example, above band-gap excitation - can be used to create single photon sources, but the disturbance of the environment due to the excitation reduces the indistinguishability of the photons. Single photon sources based on QDs will have to be resonantly excited to have high photon indistinguishability, and simultaneous collection of the photons will be necessary to make use of them. We demonstrate a method to resonantly excite a single QD embedded in a planar cavity by coupling the excitation beam into this cavity from the cleaved face of the sample while collecting the fluorescence along the samples surface normal direction. By carefully matching the excitation beam to the waveguide mode of the cavity, the excitation light can couple into the cavity and interact with the QD. The scattered photons can couple to the Fabry-Perot mode of the cavity and escape in the surface normal direction. This method allows complete freedom in the detection polarization, but the excitation polarization is restricted by the propagation direction of the excitation beam. The fluorescence from the wetting layer provides a guide to align the collection path with respect to the excitation beam. The orthogonality of the excitation and detection modes enables resonant excitation of a single QD with negligible laser scattering background.


conference on lasers and electro optics | 2017

Charging dynamics of single InGaAs quantum dots under resonant excitation

Gary Lander; Disheng Chen; Samantha Isaac; Glenn S. Solomon; Edward Flagg


conference on lasers and electro optics | 2017

Polarization-dependent interference of coherent scattering from orthogonal dipole moments of a resonantly excited quantum dot

Disheng Chen; Gary Lander; Glenn S. Solomon; Edward Flagg


conference on lasers and electro optics | 2016

Characterization of the local charge environment of a single quantum dot via resonance fluorescence

Disheng Chen; Gary Lander; Kyle S. Krowpman; Glenn S. Solomon; Edward Flagg


Bulletin of the American Physical Society | 2016

Polarization-dependent interference between dipole moments of a resonantly excited quantum dot

Disheng Chen; Gary Lander; Glenn S. Solomon; Edward Flagg


Bulletin of the American Physical Society | 2016

Photon Statistics of Quantum Dot Resonance Fluorescence under the Influence of an Above Band-Gap Laser

Disheng Chen; Gary Lander; Kyle S. Krowpman; Glenn S. Solomon; Edward Flagg


Bulletin of the American Physical Society | 2015

Photon Statistics of Quantum Dot Resonance Fluorescence under the Influence of a Non-Resonant Laser

Disheng Chen; Gary Lander; Cabot Zabriskie; Edward Flagg


Bulletin of the American Physical Society | 2014

Photon statistics of quantum dot resonance fluorescence

Disheng Chen; Gary Lander; Cabot Zabriskie; Edward Flagg

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Edward Flagg

West Virginia University

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Gary Lander

West Virginia University

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Glenn S. Solomon

National Institute of Standards and Technology

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Samantha Isaac

West Virginia University

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