English

Biphoton statistic of quantum light generated on a silicon chip

Optics 2016-03-02 v2 Quantum Physics

Abstract

We demonstrate a silicon-chip biphoton source with an unprecedented quantum cross correlation up to gsi(2)(0)=(2.58±0.16)×104{\rm g_{si}^{(2)}(0) = (2.58 \pm 0.16) \times 10^4}. The emitted biphotons are intrinsically single-mode, with self correlations of gss(2)(0)=1.90±0.05{\rm g_{ss}^{(2)}(0) = 1.90 \pm 0.05} and gii(2)(0)=1.87±0.06{\rm g_{ii}^{(2)}(0) = 1.87 \pm 0.06} 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 gc(2)(0)\rm g_{c}^{(2)}(0) as low as 0.0059±0.0014\rm 0.0059 \pm 0.0014 at a pair flux of 1.95×105\rm 1.95 \times 10^5 pairs/s, which remains below 0.026±0.001\rm 0.026 \pm 0.001 for a biphoton flux up to 2.93×106\rm 2.93 \times 10^6 pairs/s, with a photon preparation efficiency in the single-mode fiber up to 51%, among the best values that have ever been reported. Our work unambiguously demonstrates that silicon photonic chips are superior material and device platforms for integrated quantum photonics.

Keywords

Cite

@article{arxiv.1602.08057,
  title  = {Biphoton statistic of quantum light generated on a silicon chip},
  author = {Xiyuan Lu and Wei C. Jiang and Jidong Zhang and Qiang Lin},
  journal= {arXiv preprint arXiv:1602.08057},
  year   = {2016}
}

Comments

11 pages, 10 figures

R2 v1 2026-06-22T12:58:00.783Z