Department of Physics and National Center for Theoretical Sciences, National Cheng-Kung University, Tainan 701, Taiwan.
CEMS, RIKEN, 351-0198 Wako-shi, Japan.
Phys Rev Lett. 2016 Jan 15;116(2):020503. doi: 10.1103/PhysRevLett.116.020503.
Einstein-Podolsky-Rosen (EPR) steering is a type of quantum correlation which allows one to remotely prepare, or steer, the state of a distant quantum system. While EPR steering can be thought of as a purely spatial correlation, there does exist a temporal analogue, in the form of single-system temporal steering. However, a precise quantification of such temporal steering has been lacking. Here, we show that it can be measured, via semidefinite programing, with a temporal steerable weight, in direct analogy to the recently proposed EPR steerable weight. We find a useful property of the temporal steerable weight in that it is a nonincreasing function under completely positive trace-preserving maps and can be used to define a sufficient and practical measure of strong non-Markovianity.
爱因斯坦-波多尔斯基-罗森(Einstein-Podolsky-Rosen,EPR)导引是一种量子相关性,它允许远程准备或导引远程量子系统的状态。虽然 EPR 导引可以被认为是一种纯粹的空间相关性,但确实存在一种时间类似物,即单系统时间导引。然而,对于这种时间导引的精确量化一直缺乏。在这里,我们通过半定规划表明,可以通过类似于最近提出的 EPR 可导引权重的方式来测量它,具有时间可导引权重。我们发现时间可导引权重的一个有用性质,即在完全正迹保持映射下是一个非递增函数,并且可以用于定义强非马尔可夫性的充分和实用度量。