Aging Feynman-Kac equation

Aging, the process of growing old or maturing, is one of the most widely seen natural phenomena in the world. For the stochastic processes, sometimes the influence of aging cannot be ignored. For example, in this paper, by analyzing the functional distribution of the trajectories of aging particles...

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Veröffentlicht in:Journal of physics. A, Mathematical and theoretical Mathematical and theoretical, 2018-01, Vol.51 (1), p.15001
Hauptverfasser: Wang, Wanli, Deng, Weihua
Format: Artikel
Sprache:eng
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Zusammenfassung:Aging, the process of growing old or maturing, is one of the most widely seen natural phenomena in the world. For the stochastic processes, sometimes the influence of aging cannot be ignored. For example, in this paper, by analyzing the functional distribution of the trajectories of aging particles performing anomalous diffusion, we reveal that for the fraction of the occupation time T+/t of strong aging particles, 〈(T+(t)2)〉=12t2 with coefficient 12, having no relation with the aging time ta and α and being completely different from the case of weak (none) aging. In fact, we first build the models governing the corresponding functional distributions, i.e. the aging forward and backward Feynman-Kac equations; the above result is one of the applications of the models. Another application of the models is to solve the asymptotic behaviors of the distribution of the first passage time, g(ta,t). The striking discovery is that for weakly aging systems, g(ta,t)∼taα2t−1−α2, while for strongly aging systems, g(ta,t) behaves as taα−1t−α.
ISSN:1751-8113
1751-8121
DOI:10.1088/1751-8121/aa9469