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Current development of experimental investigation of squeezed light and its applications

机译:压缩光实验研究的最新进展及其应用

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Squeezed light is a nonclassical state of electro-magnetic field and has noise suppressed below the standard quantum limit in one quadrature component while increased in the other. One of the important applications of squeezed lights is quantum enhanced sensing such as gravitational wave detector with ultimate resolution. Another important application is continuous variables quantum teleportation which utilizes two mode squeezed lights as an essential resource for quantum entanglement. In these applications the final outcome is limited by squeezing level. So it is important to generate highly squeezed light. Over the past few decades a considerable number of the experiments have been performed to generate highly squeezed lights. One of the successful methods is utilization of a sub-threshold optical parametric oscillator (OPO) which includes a nonlinear optical crystal. In this article we will introduce current development of experimental investigation of continuous-wave highly squeezed light by utilizing the OPO and current topics about applications of squeezed light.
机译:压缩光是电磁场的一种非经典状态,在一个正交分量中,噪声被抑制在标准量子极限以下,而在另一个正交分量中,噪声被抑制。压缩光的重要应用之一是量子增强传感,例如具有极限分辨率的重力波检测器。另一个重要的应用是连续变量量子隐形传态,它利用两种模式压缩的光作为量子纠缠的必要资源。在这些应用中,最终结果受挤压程度的限制。因此,产生高度压缩的光非常重要。在过去的几十年中,已经进行了大量的实验以产生高度压缩的光。一种成功的方法是利用包括非线性光学晶体的亚阈值光学参量振荡器(OPO)。在本文中,我们将介绍利用OPO进行连续波高压缩光的实验研究的最新进展以及有关压缩光的应用的当前主题。

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