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作 者:William H. Sulis
机构地区:[1]Department of Physics, University of Waterloo, Waterloo, Canada [2]Department of Psychiatry and Behavioral Neursocience, McMaster University, Hamilton, Canada
出 处:《Journal of Modern Physics》2014年第16期1789-1795,共7页现代物理(英文)
摘 要:A process model of quantum mechanics utilizes a combinatorial game to generate a discrete and finite causal space, which can be defined as a self-consistent quantum mechanics. An emergent space-time ?and continuous wave function arise through a non-uniform interpolation process. Standard non-relativistic quantum mechanics emerges under the limit of infinite information (the causal space grows to infinity) and infinitesimal scale (the separation between points goes to zero). This model has the potential to address several paradoxes in quantum mechanics while remaining computationally powerful.A process model of quantum mechanics utilizes a combinatorial game to generate a discrete and finite causal space, which can be defined as a self-consistent quantum mechanics. An emergent space-time ?and continuous wave function arise through a non-uniform interpolation process. Standard non-relativistic quantum mechanics emerges under the limit of infinite information (the causal space grows to infinity) and infinitesimal scale (the separation between points goes to zero). This model has the potential to address several paradoxes in quantum mechanics while remaining computationally powerful.
关 键 词:PROCESS Theory QUANTUM FOUNDATIONS DISCRETE MODELS Emergent MODELS
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