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Photon Pairs from a Silicon Photonic Chip.

机译:来自硅光子芯片的光子对。

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摘要

Photon pair sources with the capability to tune the wavelength and correlation properties of the generated photons can be useful for quantum applications such as communication, sensing, and computing. Silicon devices based on the SOI (silicon-on-insulator) platform benefits from both tight modal confinement, due to high index contrast between core and cladding, and CMOS compatible manufacturing process, making it a suitable platform for such sources. In the present work, we discuss the possibility of using planar resonant silicon devices with bend radii of a few tens of microns as photon pair sources. We discuss that a silicon nanophotonic chip consisting of either a single microring or coupled microrings can be used to generate photon pairs around 1.55 mum. We discuss that the photons are generated in multiple pairs of wavelengths and can be tuned over several nanometers, demonstrating the capability to generate wavelength division multiplexed photon pairs at freely chosen telecommunication-band wavelengths. Further on, we discuss the ease of control over the bi-photon spectrum of the generated photon pairs and its implication in controlling their correlation properties. Uncorrelated photon pairs can be used to herald a single photon, and correlated photon pairs can be used in various quantum applications such as communication and sensing. In the end, we discuss the design parameters of a single microring resonator based sources.
机译:具有调谐所产生的光子的波长和相关特性的能力的光子对源可用于量子应用,例如通信,传感和计算。基于SOI(绝缘体上硅)平台的硅器件得益于紧密的模态限制,这是由于纤芯和包层之间的折射率差异很大,以及CMOS兼容的制造工艺,使其成为此类光源的合适平台。在本工作中,我们讨论了将弯曲半径为几十微米的平面谐振硅器件用作光子对源的可能性。我们讨论了由单个微环或耦合微环组成的硅纳米光子芯片可用于生成1.55微米左右的光子对。我们讨论了光子是在多对波长中生成的,并且可以在几纳米范围内进行调谐,从而证明了在自由选择的电信频段波长下生成波分复用光子对的能力。进一步地,我们讨论了对所产生的光子对的双光子谱的控制的容易性及其对控制它们的相关特性的意义。不相关的光子对可用于预示单个光子,而相关的光子对可用于各种量子应用,例如通信和传感。最后,我们讨论了基于单个微环谐振器的信号源的设计参数。

著录项

  • 作者

    Kumar, Ranjeet.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Electrical engineering.;Optics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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