Jiménez Omar, Solís-Prosser Miguel Angel, Neves Leonardo, Delgado Aldo
Centro de Óptica e Información Cuántica, Facultad de Ciencias, Universidad Mayor, Camino La Pirámide N°5750, Huechuraba, Santiago, Chile.
Departamento de Física, Universidad de Concepción, 160-C Concepción, Chile.
Entropy (Basel). 2019 Mar 8;21(3):263. doi: 10.3390/e21030263.
We study the classical and quantum correlations in the minimum error discrimination (ME) of two non-orthogonal pure quantum states. In particular, we consider quantum discord, thermal discord and entropy generation. We show that ME allows one to reach the accessible information between the two involved parties, Alice and Bob, in the discrimination process. We determine the amount of quantum discord that is consumed in the ME and show that the entropy generation is, in general, higher than the thermal discord. However, in certain cases the entropy generation is very close to thermal discord, which indicates that, in these cases, the process generates the least possible entropy. Moreover, we also study the ME process as a thermodynamic cycle and we show that it is in agreement with the second law of thermodynamics. Finally, we study the relation between the accessible information and the optimum success probability in ME.
我们研究了两个非正交纯量子态的最小错误判别(ME)中的经典和量子关联。特别地,我们考虑了量子失协、热失协和熵产生。我们表明,在判别过程中,最小错误判别允许人们达到参与方爱丽丝和鲍勃之间的可达信息。我们确定了最小错误判别中消耗的量子失协量,并表明熵产生通常高于热失协。然而,在某些情况下,熵产生非常接近热失协,这表明在这些情况下,该过程产生的熵尽可能少。此外,我们还将最小错误判别过程作为一个热力学循环进行研究,并表明它符合热力学第二定律。最后,我们研究了最小错误判别中可达信息与最优成功概率之间的关系。