论文标题
谐波辅助光相放大器
Harmonics-assisted optical phase amplifier
论文作者
论文摘要
两个光场之间的相对相的变化是指导这种变化的物理量的基本原理。因此,如果可以扩增相对相位以增强测量分辨率,则将非常有利。一种众所周知的相位扩增方法涉及使用多光子数和路径纠缠状态,称为中午状态。但是,高数量的中午状态很难准备,并且对光学损失高度敏感。在这里,我们在原则上提出并在实验中证明了一个相位放大器方案,并借助谐波生成过程。两种极化干涉仪中两种极化模式之间的相对相位差与级联的第二谐波生成过程相干四次。我们证明这些扩增过程可以回收利用,因此有可能实现更高数量的多个扩增步骤。此处介绍的相位放大方法比基于中午状态的方法显示出很大的优势,并且将非常有前途用于精确的光学测量。
The change in the relative phase between two light fields serves as a basic principle for the measurement of the physical quantity that guides this change. It would therefore be highly advantageous if the relative phase could be amplified to enhance the measurement resolution. One well-known method for phase amplification involves the use of the multi-photon number and path entangled state known as the NOON state; however, a high-number NOON state is very difficult to prepare and is highly sensitive to optical losses. Here we propose and experimentally demonstrate in principle a phase amplifier scheme with the assistance of a harmonic generation process. The relative phase difference between two polarization modes in a polarized interferometer is amplified coherently four times with cascaded second-harmonic generation processes. We demonstrate that these amplification processes can be recycled and therefore have the potential to realize much higher numbers of multiple amplification steps. The phase amplification method presented here shows considerable advantages over the method based on NOON states and will be highly promising for use in precision optical measurements.