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Direct Generation and Detection of Quantum Correlated Photons with 3.2 um Wavelength Spacing

机译:直接生成和检测具有3.2 um波长间隔的量子相关光子

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摘要

Quantum correlated, highly non-degenerate photons can be used to synthesize disparate quantum nodes and link quantum processing over incompatible wavelengths, thereby constructing heterogeneous quantum systems for otherwise unattainable superior performance. Existing techniques for correlated photons have been concentrated in the visible and near-IR domains, with the photon pairs residing within one micron. Here, we demonstrate direct generation and detection of high-purity photon pairs at room temperature with 3.2 um wavelength spacing, one at 780 nm to match the rubidium D2 line, and the other at 3950 nm that falls in a transparent, low-scattering optical window for free space applications. The pairs are created via spontaneous parametric downconversion in a lithium niobate waveguide with specially designed geometry and periodic poling. The 780 nm photons are measured with a silicon avalanche photodiode, and the 3950 nm photons are measured with an upconversion photon detector using a similar waveguide, which attains 34% internal conversion efficiency. Quantum correlation measurement yields a high coincidence-to-accidental ratio of 54, which indicates the strong correlation with the extremely non-degenerate photon pairs. Our system bridges existing quantum technology to the challenging mid-IR regime, where unprecedented applications are expected in quantum metrology and sensing, quantum communications, medical diagnostics, and so on.
机译:量子相关的高度非简并的光子可用于合成不同的量子节点,并在不兼容的波长上链接量子处理,从而构建了异质的量子系统,否则将无法获得优异的性能。用于相关光子的现有技术已经集中在可见光域和近红外域中,光子对位于一微米之内。在这里,我们演示了在室温下以3.2 um的波长间隔直接生成和检测高纯度光子对,一个在780 nm处与to D2线匹配,而另一个在3950 nm处属于透明,低散射光学自由空间应用程序的窗口。通过具有特殊设计的几何形状和周期性极化的铌酸锂波导中的自发参数下变频来创建这些对。用硅雪崩光电二极管测量780nm nm光子,用类似波导的上转换光子检测器测量3950nm nm光子,内部转换效率达到34%。量子相关性测量得出的巧合偶然比为54,这表明与极不简并的光子对具有很强的相关性。我们的系统将现有的量子技术与具有挑战性的中红外联系起来,在量子计量和传感,量子通信,医学诊断等领域,预计将有空前的应用。

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