Quantum Noise Radar: Assessing Quantum Correlations

D. Mogilevtsev, I. Peshko, I. Karuseichyk, A. Mikhalychev, A. Nizovtsev, G. Slepyan, Amir Boag
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Abstract

We suggest overcoming the "Rayleigh catastrophe" and reaching superresolution for imaging with both spatially and temporally-correlated field of a superradiant quantum antenna. Considering far-field radiation of two interacting spontaneously emitting two-level systems, we show that for the measurement of the temporally-delayed second-order correlation function of the scattered field, the Fisher information does not tend to zero with diminishing the distance be-tween a pair of scatterers even for non-sharp time-averaged detection. For position estimation of a larger number of scatterers, measurement of the time-delayed function is able to provide a considerable accuracy gain over the zero-delayed function. We show also that the superresolution with the considered quantum antenna can be achieved for both near-field imaging and estimating parameters of the antenna.
量子噪声雷达:评估量子相关性
我们建议克服“瑞利突变”,实现超辐射量子天线空间和时间相关场成像的超分辨率。考虑到两个相互作用的自发发射双能级系统的远场辐射,我们证明了对于散射场的时间延迟二阶相关函数的测量,即使对于非尖锐时间平均检测,费舍尔信息也不会随着散射体对之间距离的减小而趋于零。对于大量散射体的位置估计,延时函数的测量能够提供比零延迟函数更大的精度增益。我们还证明了使用所考虑的量子天线可以实现近场成像和天线参数估计的超分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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