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A squeezed light source operated under high vacuum

机译:压缩光源在高真空下工作

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摘要

Non-classical squeezed states of light are becoming increasingly important to a range of metrology and other quantum optics applications in cryptography, quantum computation and biophysics. Applications such as improving the sensitivity of advanced gravitational wave detectors and the development of space-based metrology and quantum networks will require robust deployable vacuum-compatible sources. To date non-linear photonics devices operated under high vacuum have been simple single pass systems, testing harmonic generation and the production of classically correlated photon pairs for space-based applications. Here we demonstrate the production under high-vacuum conditions of non-classical squeezed light with an observed 8.6 dB of quantum noise reduction down to 10 Hz. Demonstration of a resonant non-linear optical device, for the generation of squeezed light under vacuum, paves the way to fully exploit the advantages of in-vacuum operations, adapting this technology for deployment into new extreme environments.
机译:对于密码学,量子计算和生物物理学中的一系列计量学和其他量子光学应用,非经典压缩态的光变得越来越重要。诸如提高高级重力波探测器的灵敏度以及发展基于空间的计量学和量子网络之类的应用将需要强大的可部署真空兼容源。迄今为止,在高真空下运行的非线性光子学设备一直是简单的单程系统,用于测试谐波的产生以及用于天基应用的经典相关光子对的产生。在这里,我们演示了在高真空条件下产生的非经典压缩光,并观察到了8.6 dB的量子噪声降低到10 Hz。用于在真空下生成压缩光的谐振非线性光学设备的演示,为充分利用真空操作的优势铺平了道路,使该技术适用于部署到新的极端环境中。

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