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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Bounds on topological Abelian string-vortex and string-cigar from information-entropic measure
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Bounds on topological Abelian string-vortex and string-cigar from information-entropic measure

机译:基于信息熵测度的拓扑阿贝尔弦涡和弦雪茄界

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In this work we obtain bounds on the topological Abelian string-vortex and on the string-cigar, by using a new measure of configurational complexity, known as configurational entropy. In this way, the information-theoretical measure of six-dimensional braneworlds scenarios is capable to probe situations where the parameters responsible for the brane thickness are arbitrary. The so-called configurational entropy (CE) selects the best value of the parameter in the model. This is accomplished by minimizing the CE, namely, by selecting the most appropriate parameters in the model that correspond to the most organized system, based upon the Shannon information theory. This information-theoretical measure of complexity provides a complementary perspective to situations where strictly energy-based arguments are inconclusive. We show that the higher the energy the higher the CE, what shows an important correlation between the energy of the a localized field configuration and its associated entropic measure. (C) 2016 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license.
机译:在这项工作中,我们通过使用一种新的配置复杂性度量(称为配置熵)来获得拓扑Abelian弦涡和弦雪茄的边界。通过这种方式,六维Braneworlds场景的信息理论量度能够探测导致Brane厚度的参数是任意的情况。所谓的配置熵(CE)选择模型中参数的最佳值。这是通过基于Shannon信息论,通过最小化CE来实现的,即通过在模型中选择与最组织的系统相对应的最合适的参数来实现。这种信息理论上的复杂性度量为严格基于能量的论点尚无定论的情况提供了补充观点。我们表明,能量越高,CE越高,这表明局部场配置的能量与其相关的熵测度之间存在重要的相关性。 (C)2016作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章。

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