2018
DOI: 10.1103/physreve.97.022104
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Maximum entropy approach toH-theory: Statistical mechanics of hierarchical systems

Abstract: A novel formalism, called H-theory, is applied to the problem of statistical equilibrium of a hierarchical complex system with multiple time and length scales. In this approach, the system is formally treated as being composed of a small subsystem-representing the region where the measurements are made-in contact with a set of 'nested heat reservoirs' corresponding to the hierarchical structure of the system. The probability distribution function (pdf) of the fluctuating temperatures at each reservoir, conditi… Show more

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Cited by 7 publications
(3 citation statements)
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“…We work under the formalism of a unified hierarchical approach to describe the statistics of fluctuations in multiscale complex systems [13][14][15]. This framework, called H-theory, is an extension to multiscale systems of the compounding [5,7] or superstatistics [21] approaches to describe complex fluctuating phenomena.…”
Section: Theoretical Backgroundmentioning
confidence: 99%
See 1 more Smart Citation
“…We work under the formalism of a unified hierarchical approach to describe the statistics of fluctuations in multiscale complex systems [13][14][15]. This framework, called H-theory, is an extension to multiscale systems of the compounding [5,7] or superstatistics [21] approaches to describe complex fluctuating phenomena.…”
Section: Theoretical Backgroundmentioning
confidence: 99%
“…Our intermittency model is built upon a hierarchy of multiple coupled scales of energy transfer rates [13][14][15]. The marginal distribution of short-scale velocity increments P (δv r ) is related to the energy transfer rate ε at a larger scale [see Eq.…”
Section: Introductionmentioning
confidence: 99%
“…The Gamma distribution is used to describe nonstationary earthquake activity, the drop size in sprays [13], and maximum entropy approach to H-theory [14], etc. The gamma distribution [15] p…”
Section: Gamma Distributionmentioning
confidence: 99%