paper

Temporally and spectrally multiplexed single photon source using quantum feedback control for scalable photonic quantum technologies

arXiv:1708.08875 · doi:10.1088/1367-2630/aac948

Abstract

Current proposals for scalable photonic quantum technologies require on-demand sources of indistinguishable single photons with very high efficiency (having unheralded loss below ). Even with recent progress in the field there is still a significant gap between the requirements and state of the art performance. Here, we propose an on-chip source of multiplexed, heralded photons. Using quantum feedback control on a photon storage cavity with an optimized driving protocol, we estimate an on-demand efficiency of and unheralded loss of order , assuming high efficiency detectors and intrinsic cavity quality factors of order . We further explain how temporal- and frequency-multiplexing can be used in parallel to significantly reduce device requirements if single photon frequency conversion is possible with efficiency in the same range of .