论文标题
基于视纤维的弱值扩增对振幅型噪声的鲁棒性
Robustness of optic-fiber-based weak value amplification against amplitude-type noise
论文作者
论文摘要
基于自由空间平台的实验表明,弱值扩增(WVA)技术可以为光学传感和计量学提供高灵敏度和精度。为了推广针对现实世界应用的技术,由于成本较低,规模较小和稳定性较高,因此更适合基于光纤平台实施WVA。与自由空间平台相反,光纤中的双折射足够强,可以引起极化交叉谈话,并且必须考虑振幅式噪声。通过理论分析和实验证明,我们表明基于光纤的WVA在存在振幅型噪声的情况下是可靠的。在我们的实验中,即使在界面处的光轴上的角度未对准达到0.08拉德,灵敏度损失也可以保持在3dB之外。此外,主要结果与最近提出的简化检测方案有效,该方案与基于光纤的WVA的未来设计更兼容。我们的结果表明,基于光纤实施WVA的可行性,这为未来设计具有更高灵敏度和稳定性的光传感器提供了一种可能的方法。
Experiments based on free space platform have demonstrated that the weak value amplification (WVA) technique can provide high sensitivity and precision for optical sensing and metrology. To promote this technique for real-world applications, it is more suitable to implement WVA based on optical fiber platform due to the lower cost, smaller scale and higher stability. In contrast to the free space platform, the birefringence in optical fiber is strong enough to cause polarization cross talk, and the amplitude-type noise must be taken into account. By theoretical analysis and experimental demonstration, we show that the optic-fiber-based WVA is robust in presence of amplitude-type noise. In our experiment, even the angular misalignment on optical axes at the interface reaches 0.08rad, the sensitivity loss can be maintained less than 3dB. Moreover, the main results are valid to a simplified detection scheme that recently proposed, which is more compatible with the future design of optical-fiber based WVA. Our results indicate the feasibility of implementing WVA based on optical fiber, which provide a possible way for designing optical sensors with higher sensitivity and stability in the future.