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Modal Interpretations of Quantum Mechanics and Relativity: A Reconsideration

机译:量子力学与相对论的模态解释:一种反思

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摘要

Two of the main interpretative problems in quantum mechanics are the so-called measurement problem and the question of the compatibility of quantum mechanics with relativity theory. Modal interpretations of quantum mechanics were designed to solve both of these problems. They are no-collapse (typically) indeterministic interpretations of quantum mechanics that supplement the orthodox state description of physical systems by a set of possessed properties that is supposed to be rich enough to account for the classical-like behavior of macroscopic systems, but sufficiently restricted so as to avoid the no-hidden-variables theorems. But, as recent no-go theorems suggest, current modal interpretations are incompatible with relativity. In this paper, we suggest a strategy for circumventing these theorems. We then show how this strategy could naturally be integrated in a relational version of the modal interpretation, where quantum-mechanical states assign relational rather than intrinsic properties.
机译:量子力学中的两个主要解释性问题是所谓的测量问题和量子力学与相对论的相容性问题。量子力学的模态解释旨在解决这两个问题。它们是对量子力学的无崩溃(通常是不确定性)解释,通过一组拥有的属性补充了物理系统的正统状态描述,这些属性应该足够丰富以解释宏观系统的经典行为,但受到足够的限制从而避免无隐藏变量定理。但是,正如最近的不成功定理所表明的那样,当前的模态解释与相对论是不相容的。在本文中,我们提出了一种规避这些定理的策略。然后,我们展示了如何将该策略自然地整合到模态解释的关系版本中,在该版本中,量子力学状态分配关系而不是固有属性。

著录项

  • 作者

    Berkovitz Joseph; Hemmo Meir;

  • 作者单位
  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 {"code":"sk","name":"Slovak","id":38}
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