Quantum detector tomography of a time-multiplexed superconducting nanowire single-photon detector at telecom wavelengths
Optics Express 21:1 (2013) 893-902
Abstract:
Superconducting nanowire single-photon detectors (SNSPDs) are widely used in telecom wavelength optical quantum information science applications. Quantum detector tomography allows the positive-operator-valued measure (POVM) of a single-photon detector to be determined. We use an all-fiber telecom wavelength detector tomography test bed to measure detector characteristics with respect to photon flux and polarization, and hence determine the POVM. We study the SNSPD both as a binary detector and in an 8-bin, fiber based, Time-Multiplexed (TM) configuration at repetition rates up to 4 MHz. The corresponding POVMs provide an accurate picture of the photon number resolving capability of the TM-SNSPD. © 2013 Optical Society of America.Entang-bling: Observing quantum correlations in room-temperature solids
Journal of Physics: Conference Series 442:1 (2013)
Abstract:
Quantum entanglement in the motion of macroscopic solid bodies has implications both for quantum technologies and foundational studies of the boundary between the quantum and classical worlds. Entanglement is usually fragile in room-temperature solids, owing to strong interactions both internally and with the noisy environment. We generated motional entanglement between vibrational states of two spatially separated, millimeter-sized diamonds at room temperature. By measuring strong nonclassical correlations between Raman-scattered photons, we showed that the quantum state of the diamonds has positive concurrence with 98% probability. Our results show that entanglement can persist in the classical context of moving macroscopic solids in ambient conditions. © Published under licence by IOP Publishing Ltd.Efficient optical pumping and high optical depth in a hollow-core photonic-crystal fibre for a broadband quantum memory
NEW JOURNAL OF PHYSICS 15 (2013) ARTN 055013
High quantum efficiency photon-number-resolving detector for photonic on-chip information processing
Optica Publishing Group (2013) qm4l.1
Surpassing the conventional Heisenberg limit using classical resources
Optica Publishing Group (2013) qf2b.2