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首页> 外文期刊>The European physical journal, B. Condensed matter physics >The relations among Shannon information entropy, quantum discord, concurrence and localization properties of one-dimensional single-electron wave functions
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The relations among Shannon information entropy, quantum discord, concurrence and localization properties of one-dimensional single-electron wave functions

机译:一维单电子波函数的香农信息熵,量子不和,并发与局域性质之间的关系

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摘要

Shannon information entropy (SE), concurrence (CC), quantum discord (QD) and localization properties for various one-dimensional one-electron wave functions are intensively studied, respectively. They include Gaussian functions, power-law functions, and functions in the Anderson model and the Harper ones. For all these wave functions, we find that SE, CC and QD increase as the localization length of a wave function increases, respectively. There are linear or quadratic relationships between two of them. Therefore, we can confirm for the analyzed models that SE, CC and QD are statistically equivalent quantities to reflect the localization properties of wave functions though they are different measures of quantum information.
机译:分别深入研究了各种一维一电子波函数的香农信息熵(SE),并发(CC),量子不和(QD)和定位特性。它们包括高斯函数,幂律函数以及Anderson模型和Harper模型中的函数。对于所有这些波函数,我们发现SE,CC和QD分别随波函数的定位长度增加而增加。他们两个之间存在线性或二次关系。因此,对于所分析的模型,我们可以确认SE,CC和QD是统计上相等的量,尽管它们是量子信息的不同度量,但它们反映了波函数的定位特性。

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