Biphoton statistic of quantum light generated on a silicon chip
Xiyuan Lu, Wei C. Jiang, Jidong Zhang, and Qiang Lin

TL;DR
This paper reports a silicon-chip biphoton source with extremely high quantum correlation, high purity, and efficiency, demonstrating silicon photonics as a superior platform for integrated quantum photonics.
Contribution
The work introduces a silicon-chip biphoton source with unprecedented quantum correlations and high purity, advancing integrated quantum photonics technology.
Findings
Quantum cross correlation up to 2.58 x 10^4
Heralded single photon g^{(2)}(0) as low as 0.0059
Photon preparation efficiency up to 51%
Abstract
We demonstrate a silicon-chip biphoton source with an unprecedented quantum cross correlation up to . The emitted biphotons are intrinsically single-mode, with self correlations of and for signal and idler photons, respectively. We observe the waveform asymmetry of cross correlation between signal and idler photons and reveal the identical and non-exponential nature of self correlations of individual signal and idler photon modes, which is a nature of cavity-enhanced nonlinear optical processes. The high efficiency and high purity of the biphoton source allow us to herald single photons with a conditional self correlation as low as at a pair flux of pairs/s, which remains below $\rm 0.026…
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Taxonomy
TopicsQuantum Information and Cryptography · Photonic and Optical Devices · Neural Networks and Reservoir Computing
