神奇的“天生法则”和量子“测量”:对物理学的启示

Johan Hansson
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摘要

一、量子力学和量子场论的舞台是抽象的、不可观测的、不可观测的、m维的形式希尔伯特空间≠时空。2观察的舞台——更一般地说,是真实物理世界中所有事件(即每件事)的舞台——是经典的四维物理时空。3“伯恩法则”是将I“神奇地”转化为II的随机过程。波函数只在抽象空间I中有叠加和纠缠,在时空II中没有。直接在真实物理时空中尝试的量子理论公式实际上构成了克劳瑟和霍恩定义的“局部真实”理论的例子,因此,在地球上的实验室中,在真实的、受控的实验中,贝尔定理的大量测试已经在经验上被驳倒了。观察到的量子实体(即事件)永远不会叠加或纠缠,因为它们:(1)完全“活”(显现)在真实的物理时空中;(2)在III实现的“测量”之后,不被纠缠波函数描述。当以这种方式分离和正确处理时,量子理论与相对论(即时空)的许多基本问题和“悖论”就会消失,例如黑洞信息悖论,量子场论的无限零点能量和广义相对论的量子化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Magical “Born Rule” and Quantum “Measurement”: Implications for Physics
I. The arena of quantum mechanics and quantum field theory is the abstract, unobserved and unobservable, M-dimensional formal Hilbert space ≠ spacetime. II. The arena of observations—and, more generally, of all events (i.e., everything) in the real physical world—is the classical four-dimensional physical spacetime. III. The “Born rule” is the random process “magically” transforming I into II. Wavefunctions are superposed and entangled only in the abstract space I, never in spacetime II. Attempted formulations of quantum theory directly in real physical spacetime actually constitute examples of “locally real” theories, as defined by Clauser and Horne, and are therefore already empirically refuted by the numerous tests of Bell’s theorem in real, controlled experiments in laboratories here on Earth. Observed quantum entities (i.e., events) are never superposed or entangled as they: (1) exclusively “live” (manifest) in real physical spacetime and (2) are not described by entangled wavefunctions after “measurement” effectuated by III. When separated and treated correctly in this way, a number of fundamental problems and “paradoxes” of quantum theory vs. relativity (i.e., spacetime) simply vanish, such as the black hole information paradox, the infinite zero-point energy of quantum field theory and the quantization of general relativity.
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