论文标题
通过非CP过程的量子过程能力来识别光子非马克维亚性识别
Photonic non-Markovianity identification by quantum process capabilities of non-CP processes
论文作者
论文摘要
马尔可夫量子过程可以任意分为两个或多个合法的完全阳性(CP)子过程。当分隔的过程中至少存在一个非CP过程时,动态被认为是非马克维亚的。但是,如何利用最低限度的实验努力,而无需检查所有过程输入状态和使用纠缠资源,以识别或衡量非马克维亚性。在本文中,我们提出了一种量化非CP过程的方法,以识别和衡量非马克维亚性,而没有国家优化和纠缠的负担。这取决于非CP过程作为新的量子过程功能,可以通过量子过程层析成像系统地实现。我们还提供了一种通过没有过程断层扫描的至少四个系统状态来见证非马克维亚语的方法。我们忠实地证明,可以使用全光设置明确实施我们的方法,并应用于识别双光子晶体中单光子和两光动力学的非马克维亚性。我们的结果还可以用于探索其他动态系统中的非谷仓性,这些动力学系统可以实施。
A Markovian quantum process can be arbitrarily divided into two or more legitimate completely-positive (CP) subprocesses. When at least one non-CP process exists among the divided processes, the dynamics is considered non-Markovian. However, how to utilize minimum experimental efforts, without examining all process input states and using entanglement resources, to identify or measure non-Markovianity is still being determined. Herein, we propose a method to quantify non-CP processes for identifying and measuring non-Markovianity without the burden of state optimization and entanglement. This relies on the non-CP processes as new quantum process capabilities and can be systematically implemented by quantum process tomography. We additionally provide an approach for witnessing non-Markovianity by analyzing at least four system states without process tomography. We faithfully demonstrate that our method can be explicitly implemented using all-optical setups and applied to identify the non-Markovianity of single-photon and two-photon dynamics in birefringent crystals. Our results can also be used to explore non-Markovianity in other dynamical systems where process or state tomography is implementable.