Sanz M, Las Heras U, García-Ripoll J J, Solano E, Di Candia R
Department of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, 48080 Bilbao, Spain.
Instituto de Física Fundamental IFF-CSIC, Calle Serrano 113b, 28006 Madrid, Spain.
Phys Rev Lett. 2017 Feb 17;118(7):070803. doi: 10.1103/PhysRevLett.118.070803.
Quantum illumination consists in shining quantum light on a target region immersed in a bright thermal bath with the aim of detecting the presence of a possible low-reflective object. If the signal is entangled with the receiver, then a suitable choice of the measurement offers a gain with respect to the optimal classical protocol employing coherent states. Here, we tackle this detection problem by using quantum estimation techniques to measure the reflectivity parameter of the object, showing an enhancement in the signal-to-noise ratio up to 3 dB with respect to the classical case when implementing only local measurements. Our approach employs the quantum Fisher information to provide an upper bound for the error probability, supplies the concrete estimator saturating the bound, and extends the quantum illumination protocol to non-Gaussian states. As an example, we show how Schrödinger's cat states may be used for quantum illumination.
量子照明是指将量子光照射在沉浸于明亮热库中的目标区域,目的是检测可能存在的低反射物体。如果信号与接收器纠缠,那么相对于采用相干态的最优经典协议,合适的测量选择会带来增益。在此,我们通过使用量子估计技术来测量物体的反射率参数,解决这个检测问题,结果表明,在仅进行局部测量时,相对于经典情况,信噪比提高了3分贝。我们的方法利用量子费舍尔信息给出误差概率的上限,提供达到该上限的具体估计器,并将量子照明协议扩展到非高斯态。作为一个例子,我们展示了薛定谔猫态可如何用于量子照明。