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How to Derive the Hilbert-Space Formulation of Quantum Mechanics From Purely Operational Axioms

机译:如何从纯粹的操作公理中获得量子力学的Hilbert-Space配方

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In the present paper I show how it is possible to derive the Hilbert space formulation of Quantum Mechanics from a comprehensive definition of physical experiment and assuming experimental accessibility and simplicity as specified by five simple Postulates. This accomplishes the program presented in form of conjectures in the previous paper. Pivotal roles are played by the local observability principle, which reconciles the holism of nonlocality with the reductionism of local observation, and by the postulated existence of informationally complete observables and of a symmetric faithful state. This last notion allows one to introduce an operational definition for the real version of the "adjoint"—i. e. the transposition—from which one can derive a real Hilbert-space structure via either the Mackey-Kakutani or the Gelfand-Naimark-Segal constructions. Here I analyze in detail only the Gelfand-Naimark-Segal construction, which leads to a real Hilbert space structure analogous to that of (classes of generally unbounded) selfadjoint operators in Quantum Mechanics. For finite dimensions, general dimensionality theorems that can be derived from a local observability principle, allow us to represent the elements of the real Hilbert space as operators over an underlying complex Hilbert space (see, however, a still open problem at the end of the paper). The route for the present operational axiomatization was suggested by novel ideas originated from Quantum Tomography.
机译:在本文中,我展示了如何从物理实验的综合定义获得量子力学的Hilbert空间配方,并假设五个简单的假设规定的实验可接近性和简单性。这完成了以前纸张中以猜想形式呈现的程序。枢球角色由当地可观察性原则发挥,这与局部观察的减少主义和对称存在的可观察性和对称的忠实状态的假设存在和解非遗工的神经主义。最后一个概念允许人们为“addoint”-i的真实版本引入操作定义。 e。换位 - 通过Mackey-Kakutani或Gffand-Naimark-Segal结构,可以从中衍射真正的希尔伯特空间结构。在这里,我只分析了Gelfand-Naimark-Segal建筑,这导致了一个真正的希尔伯特空间结构类似于量子力学中的(一般无界的类别)的Selfadjoint运算符的空间结构。对于有限尺寸,可以从本地可观察性原则中得出的一般维度定理,使我们能够将真正的希尔伯特空间的元素作为运营商代表在底层复杂的希尔伯特空间上(但是,请参阅结束时仍然打开问题纸)。目前操作公务化的途径是由源自量子断层扫描的新颖思想提出的。

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