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Fisher information of wavefunctions: Classical and quantum

机译:Fisher函数的波函数信息:经典和量子

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A parametric quantum mechanical wavefunction naturally induces parametric probability distributions by taking absolute square, and we can consider its classical Fisher information. On the other hand, it also induces parametric rank-one projections which may be viewed as density operators, and we can talk about its quantum Fisher information. Among many versions of quantum Fisher information, there are two prominent ones. The first, defined via a quantum score function, was introduced by Helstrom in 1967 and is well known. The second, defined via the square root of the density operator, has its origin in the skew information introduced by Wigner and Yanase in 1963 and remains relatively unnoticed. This study is devoted to investigating the relationships between the classical Fisher informations and these two versions of quantum Fisher information for wavefunctions. It is shown that the two versions of quantum Fisher information differ by a factor 2 and that they dominate the classical Fisher information. The non-coincidence of these two versions of quantum Fisher information may be interpreted as a manifestation of quantum discord. We further calculate the difference between the Helstrom quantum Fisher information and the classical Fisher information, and show that it is precisely the instantaneous phase fluctuation of the wavefunctions.
机译:参数量子力学波函数通过取绝对平方自然地得出参数概率分布,我们可以考虑其经典Fisher信息。另一方面,它也引起参数秩一投影,可以将其视为密度算符,我们可以讨论其量子费希尔信息。在量子Fisher信息的许多版本中,有两个突出的版本。第一个是通过量子得分函数定义的,由Helstrom在1967年提出,并且众所周知。第二个是通过密度算子的平方根定义的,其起源是Wigner和Yanase在1963年引入的偏斜信息,至今仍未引起人们的注意。这项研究致力于研究经典费舍尔信息与这两个版本的量子费舍尔信息的波动函数之间的关系。结果表明,量子Fisher信息的两个版本相差2倍,并且它们在经典Fisher信息中占主导地位。量子费希尔信息的这两个版本的不一致可以解释为量子不和的体现。我们进一步计算了赫尔斯特罗姆量子费舍尔信息和经典费舍尔信息之间的差,并证明这恰恰是波函数的瞬时相位波动。

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