论文标题
在强噪声背景下的自动相关弱价扩增
Auto-correlative weak-value amplification under strong noise background
论文作者
论文摘要
通过选择前选择和选择后状态之间的更多正交性,人们可以根据弱值扩增(WVA)方法显着提高一般光学量子计量的灵敏度。然而,增加正交性降低了检测光子的概率并使弱测量值变得困难,尤其是当弱测量受到强噪声干扰并且指针以负DB信号 - 噪声比(SNR)淹没时,指针被淹没。在本文中,我们使用时间指针进行了一种修改的弱测量协议,即自动相关弱值扩增(AWVA)方法。具体而言,通过在高斯白噪声下实现两个同时实现两个同时的自动相关弱测量值来测量高斯脉冲的较小纵向时间延迟(微小的相移)$τ$。少量$τ$是通过测量脉冲的自动相关系数获得的,而不是拟合标准WVA技术中探针的平均值的偏移。仿真结果表明,AWVA方法的表现优于时间域中的标准WVA技术,其统计误差较小,这显着提高了在强噪声背景下弱测量的精度。
By choosing more orthogonality between pre-selection and post-selection states, one can significantly improve the sensitivity in the general optical quantum metrology based on the weak-value amplification (WVA) approach. However, increasing the orthogonality decreases the probability of detecting photons and makes the weak measurement difficult, especially when the weak measurement is disturbed by strong noise and the pointer is drowned in noise with a negative-dB signal-to-noise ratio (SNR). In this article, we investigate a modified weak measurement protocol with a temporal pointer, namely, the auto-correlative weak-value amplification (AWVA) approach. Specifically, a small longitudinal time delay (tiny phase shift) $τ$ of a Gaussian pulse is measured by implementing two simultaneous auto-correlative weak measurements under Gaussian white noise with different SNR. The small quantities $τ$ are obtained by measuring the auto-correlation coefficient of the pulses instead of fitting the shift of the mean value of the probe in the standard WVA technique. Simulation results show that the AWVA approach outperforms the standard WVA technique in the time domain with smaller statistical errors, remarkably increasing the precision of weak measurement under strong noise background.