Wave Function and Information

Leonardo Chiatti
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Abstract

Two distinct measures of information, connected respectively to the amplitude and phase of the wave function of a particle, are proposed. There are relations between the time derivatives of these two measures and their gradients on the configuration space, which are equivalent to the wave equation. The information related to the amplitude measures the strength of the potential coupling of the particle (which is itself aspatial) with each volume of its configuration space, i.e., its tendency to participate in an interaction localized in a region of ordinary physical space corresponding to that volume. The information connected to the phase is that required to obtain the time evolution of the particle as a persistent entity starting from a random succession of bits. It can be considered as the information provided by conservation principles. The meaning of the so-called “quantum potential” in this context is briefly discussed.
波函数与信息
我们提出了两种不同的信息测量方法,它们分别与粒子波函数的振幅和相位有关。这两种量度的时间导数与它们在构型空间上的梯度之间存在着等价于波方程的关系。与振幅相关的信息测量粒子(本身是非空间的)与其构型空间每个体的潜在耦合强度,即粒子参与与该体相对应的普通物理空间区域中局部相互作用的倾向。与相位相关的信息是指从随机比特序列开始,获得粒子作为持久实体的时间演化所需的信息。它可以被视为守恒原理提供的信息。这里简要讨论一下所谓 "量子势 "的含义。
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