Photon pair generation via down-conversion in III-V semiconductor microrings: modal dispersion and quasi-phase matching

Samuel E. Fontaine, Colin Vendromin, Trevor J. Steiner, Amirali Atrli, Lillian Thiel, Joshua Castro, Galan Moody, John Bowers, Marco Liscidini, J. E. Sipe
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Abstract

We explore how III-V semiconductor microring resonators can efficiently generate photon pairs and squeezed vacuum states via spontaneous parametric down-conversion by utilizing their built-in quasi phase matching and modal dispersion. We present an analytic expression for the biphoton wave function of photon pairs generated by weak pump pulses, and characterize the squeezed states that result under stronger pumping conditions. Our model includes loss, and captures the statistics of the scattered photons. A detailed sample calculation shows that for low pump powers conversion efficiencies of 10$^{-5}$, corresponding to a rate of 39 MHz for a pump power of 1 $\mu$W, are attainable for rudimentary structures such as a simple microring coupled to a waveguide, in both the continuous wave and pulsed excitation regimes. Our results suggest that high levels of squeezing and pump depletion are attainable, possibly leading to the deterministic generation of non-Gaussian states
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通过 III-V 族半导体微镜中的下转换产生光子对:模态色散和准相位匹配
我们探讨了 III-V 半导体微oring 谐振器如何利用其内置的准相位匹配和模态色散功能,通过自发参量降频转换有效地产生光子对和挤压真空态。我们提出了由弱泵浦脉冲产生的光子对的双光子波函数解析表达式,并描述了在较强泵浦条件下产生的挤压态。我们的模型包括损耗,并捕捉到了散射光子的统计数据。详细的抽样计算显示,在低泵浦功率下,转换效率可达 10$^{-5}$,对应于 1 $mu$W 泵浦功率下的 39 MHz 频率,这对于诸如与波导耦合的简单微孔等初级结构来说,在连续波和脉冲激发状态下都是可以实现的。我们的研究结果表明,高水平的挤压和泵耗是可以实现的,这可能会导致非高斯状态的确定性产生。
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