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Disturbance in weak measurements and the difference between quantum and classical weak values

机译:弱测量中的干扰以及量子和经典弱值之间的差异

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The role of measurement-induced disturbance in weak measurements is of central importance for the interpretation of the weak value. Uncontrolled disturbance can interfere with the postselection process and make the weak value dependent on the details of the measurement process. Here we develop the concept of a generalized weak measurement for classical and quantum mechanics. The two cases appear remarkably similar, but we point out some important differences. A priori it is not clear what the correct notion of disturbance should be in the context of weak measurements. We consider three different notions and get three different results: (1) For a "strong" definition of disturbance, we find that weak measurements are disturbing. (2) For a weaker definition we find that a general class of weak measurements is nondisturbing, but that one gets weak values which depend on the measurement process. (3) Finally, with respect to an operational definition of the "degree of disturbance," we find that the AAV weak measurements are the least disturbing, but that the disturbance is always nonzero.
机译:测量引起的干扰在弱测量中的作用对于解释弱值至关重要。不受控制的干扰会干扰后选过程,并使弱值取决于测量过程的细节。在这里,我们为经典力学和量子力学开发了广义弱测量的概念。两种情况看起来非常相似,但我们指出了一些重要的区别。先验地还不清楚在弱测量的情况下正确的干扰概念应该是什么。我们考虑了三种不同的概念并获得了三种不同的结果:(1)对于“强”的扰动定义,我们发现弱的测量值正在扰动。 (2)对于一个较弱的定义,我们发现一类普通的弱测量是无干扰的,但是一个弱测量值取决于测量过程。 (3)最后,关于“扰动程度”的操作定义,我们发现AAV弱测量值是最小的扰动,但扰动始终非零。

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