activity
20152019
most citedOptical synthesis of large-amplitude squeezed coherent-state superpositions with minimal resources

138 citations · 225 across the 4 of their papers we have counts for

collaborators

6 papers

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.ins-det2017

Towards integrated superconducting detectors on lithium niobate waveguides

Jan Philipp Höpker, Moritz Bartnick, Evan Meyer-Scott +15

Superconducting detectors are now well-established tools for low-light optics, and in particular quantum optics, boasting high-efficiency, fast response and low noise. Similarly, l…

quant-ph20171 cited

Superconducting Single-Photon Detectors with Enhanced High-Effciency Bandwidth

Stephan Krapick, Marina Hesselberg, Varun B. Verma +3

We present an alternative approach to the fabrication of highly efficient superconducting nanowire single-photon detectors (SNSPDs) based on tungsten silicide. Using well-establish…

quant-ph2017

A cost-effective measurement-device-independent quantum key distribution system for quantum networks

Raju Valivarthi, Qiang Zhou, Caleb John +6

We experimentally realize a measurement-device-independent quantum key distribution (MDI-QKD) system based on cost-effective and commercially available hardware such as distributed…

quant-ph2016

Efficient and pure femtosecond-pulse-length source of polarization-entangled photons

Morgan M. Weston, Helen M. Chrzanowski, Sabine Wollmann +9

We present a source of polarization entangled photon pairs based on spontaneous parametric downconversion engineered for frequency uncorrelated telecom photon generation. Our sourc…

quant-ph2015138 cited

Optical synthesis of large-amplitude squeezed coherent-state superpositions with minimal resources

K. Huang, H. Le Jeannic, J. Ruaudel +10

We propose and experimentally realize a novel versatile protocol that allows the quantum state engineering of heralded optical coherent-state superpositions. This scheme relies on…