论文标题
概率世界
The probabilistic world
论文作者
论文摘要
物理基于概率作为数学描述的基本实体。可观察物的期望值是根据经典统计规则计算的。一个世界的总体概率分布始终涵盖。量子形式主义一旦关注时代概率信息的演变,就会产生量子形式主义。波函数或密度矩阵允许制定经典统计的一般线性进化定律。经典统计的量子形式主义是一种强大的工具,它使我们能够为广义的ISING模型实施可观察到的相关傅立叶表示的动量。操作员与可观察物的关联允许按照通常的量子规则根据密度矩阵来计算期望值。我们表明,概率的细胞自动机是具有离散时间步骤和真实波函数的公式中的量子系统。使用复杂的结构,可以用涉及费米金创建和an灭操作员的哈密顿量来表达自动机的进化操作员。时间本地概率信息等于整体概率系统的子系统,该系统与其过去和未来组成的环境相关。这样的子系统通常涉及概率可观察到的,这些概率可观察到其可能的测量值只有概率分布。不完整的统计信息不允许计算任意子系统观察到的经典相关功能。贝尔的不平等通常不适用。
Physics is based on probabilities as fundamental entities of a mathematical description. Expectation values of observables are computed according to the classical statistical rule. The overall probability distribution for one world covers all times. The quantum formalism arises once one focuses on the evolution of the time-local probabilistic information. Wave functions or the density matrix allow the formulation of a general linear evolution law for classical statistics. The quantum formalism for classical statistics is a powerful tool which allows us to implement for generalized Ising models the momentum observable with the associated Fourier representation. The association of operators to observables permits the computation of expectation values in terms of the density matrix by the usual quantum rule. We show that probabilistic cellular automata are quantum systems in a formulation with discrete time steps and real wave functions. With a complex structure the evolution operator for automata can be expressed in terms of a Hamiltonian involving fermionic creation and annihilation operators. The time-local probabilistic information amounts to a subsystem of the overall probabilistic system which is correlated with its environment consisting of the past and future. Such subsystems typically involve probabilistic observables for which only a probability distribution for their possible measurement values is available. Incomplete statistics does not permit to compute classical correlation functions for arbitrary subsystem-observables. Bell's inequalities are not generally applicable.