论文标题

高斯光束倾斜角的干涉测量测定测量

Interferometric sensing of the tilt angle of a Gaussian beam

论文作者

Walborn, S. P., Aguilar, G. H., Saldanha, P. L., Davidovich, L., Filho, R. L. de Matos

论文摘要

我们研究了干涉技术以估计光束的挠度角,并将其与光束偏转的直接检测进行比较。我们表明,量子计量方法导致对单个光子和经典领域的统一处理。使用Fisher信息评估干涉方案的精确限制,我们表明可以通过利用梁的初始横向位移来提高精度。与非间隙方法相比,对于Sagnac和Mach-Zhhnder样配置而言,这种增益都可以很大。除了精确度的基本增加外,干涉方案还具有技术优势,即(i)精确限制可以通过田间的唯一极化测量来饱和,并且(ii)检测系统可以沿梁沿着光束的任何纵向位置放置。我们还考虑了依赖位置的极化测量值,并表明在这种情况下,精度随传播距离以及初始横向位移而增加。

We investigate interferometric techniques to estimate the deflection angle of an optical beam and compare them to the direct detection of the beam deflection. We show that quantum metrology methods lead to a unifying treatment for both single photons and classical fields. Using the Fisher information to assess the precision limits of the interferometric schemes, we show that the precision can be increased by exploiting the initial transverse displacement of the beam. This gain, which is present for both Sagnac and Mach-Zehnder-like configurations, can be considerable when compared to non-interferometric methods. In addition to the fundamental increase in precision, the interferometric schemes have the technical advantage that (i) the precision limits can be saturated by a sole polarization measurement on the field, and that (ii) the detection system can be placed at any longitudinal position along the beam. We also consider position-dependent polarization measurements, and show that in this case the precision increases with the propagation distance, as well as the initial transverse displacement.

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