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Visualizzazione dei post in ordine di data per la query FPUT. Ordina per pertinenza Mostra tutti i post
Visualizzazione dei post in ordine di data per la query FPUT. Ordina per pertinenza Mostra tutti i post

giovedì 17 luglio 2025

# gst: prethermalization in Fermi-Pasta-Ulam-Tsingou chains

<< ️The observation of the Fermi-Pasta-Ulam-Tsingou (FPUT) paradox, namely the lack of equipartition in the evolution of a normal mode in a nonlinear chain on unexpectedly long times, is arguably the most famous numerical experiment in the history of physics. >> 

<< ️Seventy years after the original publication, most studies in FPUT chains still focus on long wavelength initial states similar to the original paper. It is shown here that all characteristic features of the FPUT paradox are rendered even more striking if modes with short(er) wavelengths are evolved instead. >>

<< ️Since not every normal mode leads to equipartition, (AA) also provide a simple technique to predict which modes, and in what perturbation order, are excited starting from an initial mode (root) in 𝛼-FPUT chains. The excitation sequences associated with a root are then numerically shown to spread energy at different speeds, leading to prethermalization regimes that become longer as a function of mode excitation number. This effect is visible in observables such as mode energies and spectral entropies and, surprisingly, also in the time evolution of invariant quantities such as Lyapunov times and Kolmogorov-Sinai entropies. >>

AA << findings generalize the original FPUT experiment, provide an original look at the paradox's source, and enrich the vast literature dedicated to studying equipartition in classical many-body systems. >>

Gabriel M. Lando, Sergej Flach. Prethermalization in Fermi-Pasta-Ulam-Tsingou chains. Phys. Rev. E 112, 014206. Jul 8, 2025.

arXiv:2504.04725v2 [cond-mat.stat-mech]. Jul 9, 2025.

Also: Fermi– Pasta– Ulam– Tsingou problem. Wikipedia, Jun 16, 2025. 
https://en.m.wikipedia.org/


Keywords: gst, paradox, FPUT.

sabato 22 aprile 2017

# s-gst: concerning a FPUT problem

<< In physics, the Fermi-Pasta-Ulam-Tsingou (FPUT) problem—which found that certain nonlinear systems do not disperse their energy, but rather return to their initial excited states—has been a challenge that scientists have tackled repeatedly since 1955. >>

Grove  Potter. Study unravels  long-held Fermi puzzle tied to nonlinear  systems. Apr. 14,  2017.

https://m.phys.org/news/2017-04-unravels-long-held-fermi-puzzle-tied.html

<< As  a  by-product,  we  show how  fluctuations  of  system  quantities,  and  thus  the  distribution  functions,  are influenced  by  the  Hertz  potential.  In  particular,  the  variance  of  the  system's  kinetic energy  probability  density  function  is  reduced  by  a  factor  related  to  the  contact potential >>

Michelle Przedborski, Surajit Sen, and Thad A. Harroun. Fluctuations in Hertz chains at equilibrium. Phys. Rev. E 95, 032903 doi: 10.1103/PhysRevE.95.032903  Publ. 6 March 2017

https://journals.aps.org/pre/abstract/10.1103/PhysRevE.95.032903