论文标题
相干驱动的光子de Broglie Sagnac干涉仪
Coherently driven photonic de Broglie Sagnac interferometer
论文作者
论文摘要
由于海森堡极限的量子优势超过了量子计量学的潜在应用,因此数十年来已经对量子测量进行了深入研究。量子测量的内核在两分光子对之间的量子相关性或在相应的非交通变量满足海森堡不确定性原理的非交换变量上被一个参数猝灭的量子相关性。结果,量子测量在测量灵敏度中带来了平方根定律的量子增益。光子de Broglie波(PBW)一直是量子计量学上增益的关键特征,尤其是对于相位分辨率增强,超出了雷利标准的经典极限或仅仅是衍射极限。然而,由于高阶纠缠光子对(例如中午状态)的效率极低,但是,对量子计量学的PBW实施受到严重限制。在此,引入了一种完全不同的量子测量机理,用于新型PBW,并以其潜在的改良SAGNAC干涉仪的潜在应用,其中分辨率增强的数量级高于其经典对应物的几个数量级。
Quantum measurements have been intensively researched over decades due to quantum advantage of Heisenberg limit beating the standard quantum limit toward potential applications of quantum metrology. The kernel of quantum measurements is in the quantum correlation between bipartite photon pairs or squeezed light quenched by one parameter over corresponding noncommuting variable satisfying Heisenberg uncertainty principle. As a result, quantum measurements bring a quantum gain of the square root law in measurement sensitivity. Photonic de Broglie waves (PBW) have been the key feature of such a gain in quantum metrology especially for phase resolution enhancement beyond the classical limit of Rayleigh criterion or simply the diffraction limit. Due to extremely low efficiency of higher-order entangled photon pair generations such as a NOON state, however, the implementation of PBW for quantum metrology has been severely limited. Here, a completely different mechanism of quantum measurements is introduced for a new type of PBW and presented for its potential application of a modified Sagnac interferometer, where the resolution enhancement is several orders of magnitude higher than its classical counterpart.