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Quantum-enhanced balanced detection for ultrasensitive transmission measurement

机译:超敏传输测量的量子增强的平衡检测

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Balanced detection is a popular method to cancel out the effect of laser intensity noise in optical measurements and spectroscopy. However, the signal-to-noise ratio (SNR) that can be achieved with balanced detection is constrained by the standard quantum limit (SQL). Here, we propose quantum-enhanced balanced detection (QBD), which allows us to improve the SNR beyond the SQL to realize ultrasensitive transmission measurement. In QBD, squeezed vacuum is injected to one of the input ports of a beamsplitter (BS) used in balanced detection to produce a pair of light waves whose shot noises are entangled with each other. Compared with previous quantum-enhanced measurement methods, QBD is advantageous because it can handle a higher optical power without sacrificing the degree of sensitivity enhancement. We present the theory of QBD and discuss the effects of the splitting ratio of the BS and the optical loss caused by the sample under test. We also describe the application of QBD to the sensitivity enhancement of molecular vibrational imaging based on stimulated Raman scattering microscopy. (C) 2020 Optical Society of America
机译:在光学测量和光谱学中,平衡检测是消除激光强度噪声影响的常用方法。然而,通过平衡检测可以实现的信噪比(SNR)受到标准量子极限(SQL)的限制。在这里,我们提出了量子增强平衡检测(QBD),它允许我们将信噪比提高到SQL之外,以实现超灵敏的传输测量。在QBD中,压缩真空被注入平衡检测中使用的分束器(BS)的一个输入端口,以产生一对散粒噪声相互纠缠的光波。与以往的量子增强测量方法相比,QBD具有优势,因为它可以在不牺牲灵敏度增强程度的情况下处理更高的光功率。我们介绍了QBD的理论,讨论了BS的分裂比和被测样品引起的光损耗的影响。我们还描述了QBD在基于受激拉曼散射显微镜的分子振动成像灵敏度增强中的应用。(C) 2020美国光学学会

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