Gaussian quantum metrology for mode-encoded parameters

被引:0
|
作者
Sorelli, Giacomo [1 ,2 ]
Gessner, Manuel [3 ]
Treps, Nicolas [1 ]
Walschaers, Mattia [1 ]
机构
[1] Sorbonne Univ, ENS Univ PSL, CNRS, Lab Kastler Brossel,Coll France, 4 Pl Jussieu, F-75252 Paris, France
[2] Fraunhofer IOSB, Fraunhofer Inst Optron Syst Technol & Image Exploi, Gutleuthausstr 1, D-76275 Ettlingen, Germany
[3] Univ Valencia, IFIC, CSIC, Dept Fis Teor, C Dr Moliner 50, Burjassot 46100, Valencia, Spain
来源
NEW JOURNAL OF PHYSICS | 2024年 / 26卷 / 07期
关键词
quantum metrology; multimode quantum optics; Gaussian states; DISTANCE; NOISE;
D O I
10.1088/1367-2630/ad5eb2
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Quantum optical metrology aims to identify ultimate sensitivity bounds for the estimation of parameters encoded into quantum states of the electromagnetic field. In many practical applications, including imaging, microscopy, and remote sensing, the parameter of interest is not only encoded in the quantum state of the field, but also in its spatio-temporal distribution, i.e. in its mode structure. In this mode-encoded parameter estimation setting, we derive an analytical expression for the quantum Fisher information valid for arbitrary multimode Gaussian fields. To illustrate the power of our approach, we apply our results to the estimation of the transverse displacement of a beam and to the temporal separation between two pulses. For these examples, we show how the estimation sensitivity can be enhanced by adding squeezing into specific modes.
引用
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页数:23
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