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4-dB Quadrature Squeezing With Fiber-Coupled PPLN Ridge Waveguide Module

机译:用光纤耦合PPLN脊波导模块挤压4-DB正交

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We have developed an optical parametric amplification module for quadrature squeezing with input and output ports coupled with optical fibers for both fundamental and second harmonic. The module consists of a periodically poled LiNbO3 ridge waveguide fabricated with dry etching, dichroic beamsplitters, lenses and four optical fiber pigtales. The high durability of the waveguide and the good separation of squeezed light from a pump beam by the dichroic beamsplitter enable us to inject intense continuous-wave pump light with the power of over 300 mW. We perform -4.0 +/- 0.1 dB of noise reduction for a vacuum state at 1553.3 nm by using a fiber-optics-based measurement setup, which consists of a fiber-optic beamsplitter and a homemade fiber-receptacle balanced detector. The intrinsic loss of the squeezed vacuum in the module is estimated to be 25%. Excluding the extrinsic loss of the measuremental system, the squeezing level in the output fiber of the module is estimated to be -5.7 +/- 0.1 dB. A modularized alignment-free fiber-coupled quadrature squeezer could help to realize quantum information processing with fiber optics.
机译:我们开发了一种光学参数放大模块,用于用输入和输出端口挤压与光纤,用于基本和二次谐波的反应端口。该模块由具有干蚀刻,二向色束分布器,透镜和四种光纤尾部的定期抛光的LINGB3脊波导。波导的高耐久性和二向色束梁从泵浦梁的良好分离使得我们能够以超过300mW的功率注入强烈的连续波泵光。我们通过使用基于光纤的测量设置,在1553.3nm处为真空状态执行-4.0 +/- 0.1dB的降噪,该测量设置包括光纤横梁和自制纤维插座平衡检测器。模块中挤压真空的固有损失估计为25%。不包括测量系统的外部损耗,模块的输出光纤中的挤压电平估计为-5.7 +/- 0.1dB。模块化的对齐光纤耦合正交挤压器可以帮助实现光纤的量子信息处理。

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