most citedQuantum Frequency Conversion of a Quantum Dot Single-Photon Source on a Nanophotonic Chip

86 citations · 86 across the 1 of their papers we have counts for

collaborators

5 papers

physics.optics2019

Milliwatt-threshold visible-telecom optical parametric oscillation using silicon nanophotonics

Xiyuan Lu, Gregory Moille, Anshuman Singh +8

The on-chip creation of coherent light at visible wavelengths is crucial to field-level deployment of spectroscopy and metrology systems. Although on-chip lasers have been implemen…

physics.app-ph2019

Indistinguishable photons from deterministically integrated single quantum dots in heterogeneous GaAs/SiN quantum photonic circuits

Peter Schnauber, Anshuman Singh, Johannes Schall +6

Silicon photonics enables scaling of quantum photonic systems by allowing the creation of extensive, low-loss, reconfigurable networks linking various functional on-chip elements.…

quant-ph2019

Tunable quantum beat of single photons enabled by nonlinear nanophotonics

Qing Li, Anshuman Singh, Xiyuan Lu +5

We demonstrate the tunable quantum beat of single photons through the co-development of core nonlinear nanophotonic technologies for frequency-domain manipulation of quantum states…

quant-ph201986 cited

Quantum Frequency Conversion of a Quantum Dot Single-Photon Source on a Nanophotonic Chip

Anshuman Singh, Qing Li, Shunfa Liu +10

Single self-assembled InAs/GaAs quantum dots are promising bright sources of indistinguishable photons for quantum information science. However, their distribution in emission wave…

physics.optics2019

Efficient telecom-to-visible spectral translation through ultra-low power nonlinear nanophotonics

Xiyuan Lu, Gregory Moille, Qing Li +7

The ability to spectrally translate lightwave signals in a compact, low-power platform is at the heart of the promise of nonlinear nanophotonic technologies. For example, a device…