Candeloro Alessandro, Razavian Sholeh, Piccolini Matteo, Teklu Berihu, Olivares Stefano, Paris Matteo G A
Quantum Technology Lab, Dipartimento di Fisica "Aldo Pontremoli", Università degli Studi di Milano, I-20133 Milano, Italy.
INFN, Sezione di Milano, I-20133 Milano, Italy.
Entropy (Basel). 2021 Oct 16;23(10):1353. doi: 10.3390/e23101353.
Active optical media leading to interaction Hamiltonians of the form H=λ˜(a+a†)ζ represent a crucial resource for quantum optical technology. In this paper, we address the characterization of those nonlinear media using quantum probes, as opposed to semiclassical ones. In particular, we investigate how squeezed probes may improve and estimation of the nonlinear coupling λ˜ and of the nonlinearity order ζ. Upon using tools from quantum estimation, we show that: (i) the two parameters are compatible, i.e., the may be jointly estimated without additional quantum noise; (ii) the use of squeezed probes improves precision at fixed overall energy of the probe; (iii) for low energy probes, squeezed vacuum represent the most convenient choice, whereas for increasing energy an optimal squeezing fraction may be determined; (iv) using optimized quantum probes, the scaling of the corresponding precision with energy improves, both for individual and joint estimation of the two parameters, compared to semiclassical coherent probes. We conclude that quantum probes represent a resource to enhance precision in the characterization of nonlinear media, and foresee potential applications with current technology.
导致哈密顿量形式为(H = \lambda˜(a + a†)\zeta)的相互作用的有源光学介质是量子光学技术的关键资源。在本文中,我们使用量子探针而非半经典探针来研究这些非线性介质的特性。特别地,我们研究压缩探针如何改善对非线性耦合(\lambda˜)和非线性阶数(\zeta)的估计。通过使用量子估计工具,我们表明:(i)这两个参数是相容的,即可以在没有额外量子噪声的情况下联合估计它们;(ii)在探针的总能量固定时,使用压缩探针可提高精度;(iii)对于低能量探针,压缩真空是最方便的选择,而对于能量增加的情况,可以确定最佳压缩分数;(iv)与半经典相干探针相比,使用优化的量子探针,对于这两个参数的单独估计和联合估计,相应精度随能量的缩放都有所改善。我们得出结论,量子探针是提高非线性介质特性表征精度的一种资源,并预见了其在当前技术中的潜在应用。