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量子态矢量坍缩方程的独特性。

Uniqueness of the equation for quantum state vector collapse.

机构信息

Department of Physics, University of Trieste, Strada Costiera 11, 34151 Trieste, Italy and Istituto Nazionale di Fisica Nucleare, Trieste Section, Via Valerio 2, 34127 Trieste, Italy.

出版信息

Phys Rev Lett. 2013 Nov 22;111(21):210401. doi: 10.1103/PhysRevLett.111.210401. Epub 2013 Nov 18.

Abstract

The linearity of quantum mechanics leads, under the assumption that the wave function offers a complete description of reality, to grotesque situations famously known as Schrödinger's cat. Ways out are either adding elements of reality or replacing the linear evolution by a nonlinear one. Models of spontaneous wave function collapses took the latter path. The way such models are constructed leaves the question of whether such models are in some sense unique, i.e., whether the nonlinear equations replacing Schrödinger's equation are uniquely determined as collapse equations. Various people worked on identifying the class of nonlinear modifications of the Schrödinger equation, compatible with general physical requirements. Here we identify the most general class of continuous wave function evolutions under the assumption of no-faster-than-light signaling.

摘要

量子力学的线性假设下,波函数提供了对现实的完整描述,导致了著名的薛定谔猫等荒谬情况。出路要么是添加现实元素,要么是用非线性代替线性演化。自发波函数塌缩模型选择了后者。这些模型的构建方式留下了这样一个问题,即这些模型在某种意义上是否是唯一的,即替代薛定谔方程的非线性方程是否作为塌缩方程被唯一确定。许多人致力于确定与一般物理要求兼容的薛定谔方程的非线性修正的类别。在这里,我们在不假设超光速信号的情况下,确定了连续波函数演化的最一般类别。

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