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Broadband quadrature-squeezed vacuum and nonclassical photon number correlations from a nanophotonic device

机译:宽带正交 - 挤压真空和纳米光电装置的非分类光子数相关性

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We report demonstrations of both quadrature-squeezed vacuum and photon number difference squeezing generated in an integrated nanophotonic device. Squeezed light is generated via strongly driven spontaneous four-wave mixing below threshold in silicon nitride microring resonators. The generated light is characterized with both homodyne detection and direct measurements of photon statistics using photon number–resolving transition-edge sensors. We measure 1.0(1) decibels of broadband quadrature squeezing (~4 decibels inferred on-chip) and 1.5(3) decibels of photon number difference squeezing (~7 decibels inferred on-chip). Nearly single temporal mode operation is achieved, with measured raw unheralded second-order correlations g sup(2)/sup as high as 1.95(1). Multiphoton events of over 10 photons are directly detected with rates exceeding any previous quantum optical demonstration using integrated nanophotonics. These results will have an enabling impact on scaling continuous variable quantum technology.
机译:我们报告了在集成的纳米光电装置中产生的正交挤压真空和光子数差挤压的示范。通过氮化硅微管谐振器中的强烈驱动的自发四波混合产生挤压光。产生的光具有使用光子数分辨过渡边缘传感器的光子统计的杂种检测和光子统计的直接测量。我们测量1.0(1)个宽带正交挤压(〜4分贝推断出来的4分贝)和1.5(3)光子数差分挤压的1.5(3)分贝(〜7分贝推断)。实现几乎单个时间模式操作,测量的原始谐振二阶相关总值G (2)高达1.95(1)。通过使用集成纳米光源的速率超过任何先前的量子光学演示,直接检测到超过10个光子的多光子事件。这些结果将对缩放连续变量量子技术进行影响。

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