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Quantum points/patterns, Part 2. From quantum points to quantum patterns via multiresolution

机译:量子点/图案,第2部分。从量子点到通过多分辨率的量子图案

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It is obvious that we still have not any unified framework covering a zoo of interpretations of Quantum Mechanics, as well as satisfactory understanding of main ingredients of a phenomena like entanglement. The starting point is an idea to describe properly the key ingredient of the area, namely point/particle-like objects (physical quantum points/particles or, at least, structureless but quantum objects) and to change point (wave) functions by sheaves to the sheaf wave functions (Quantum Sheaves). In such an approach Quantum States are sections of the coherent sheaves or contravariant functors from the kinematical category describing space-time to other one, Quantum Dynamical Category, properly describing the complex dynamics of Quantum Patterns. The objects of this category are some filtrations on the functional realization of Hilbert space of Quantum States. In this Part 2, the sequel of Part 1, we present a family of methods which can describe important details of complex behaviour in quantum ensembles: the creation of nontrivial patterns, localized, chaotic, entangled or decoherent, from the fundamental basic localized (nonlinear) eigenmodes (in contrast with orthodox gaussian-like) in various collective models arising from the quantum hierarchies described by Wigner-like equations.
机译:显然,我们还没有一个统一的框架来涵盖量子力学解释的动物园,以及对纠缠等现象的主要成分的令人满意的理解。出发点是一个想法,可以正确描述该区域的关键成分,即点/类粒子对象(物理量子点/粒子或至少是无结构但量子对象),并通过滑轮改变点(波)功能捆波功能(量子捆)。在这种方法中,量子态是相干绳轮或反变函子的各个部分,它们从运动学类别描述了时空,而在另一类中则是量子动力学类别,恰当地描述了量子模式的复杂动力学。该类别的对象是对量子态的希尔伯特空间的功能实现的一些过滤。在第2部分(第1部分的续篇)中,我们介绍了一系列方法,这些方法可以描述量子集合中复杂行为的重要细节:从基本的基本局部化(非线性)创建非平凡的模式,局部的,混沌的,纠缠的或退相干的)本征模(与正统的高斯型相反)在各种集合模型中,这些模型是由类Wigner方程描述的量子层次结构产生的。

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