Bulletin of the American Physical Society
APS March Meeting 2021
Volume 66, Number 1
Monday–Friday, March 15–19, 2021; Virtual; Time Zone: Central Daylight Time, USA
Session R08: Noise-Driven Dynamics in Far-From-Equilibrium Systems II
8:00 AM–11:00 AM,
Thursday, March 18, 2021
Sponsoring
Units:
GSNP DBIO
Chair: Luis Bonilla, Univ Carlos III De Madrid
Abstract: R08.00013 : Thermodynamic Signalling in Underdamped Networks
10:48 AM–11:00 AM
Live
Presenter:
John Neu
(University of California, Berkeley)
Author:
John Neu
(University of California, Berkeley)
Thermodynamic communication (movement of energy) between underdamped degrees of freedom or "nodes" is mediated by the momentum-coordinate correlation tensor Ω :=〈 pqT〉. We may formally regard the components Ωij as a field on the discrete space of node pairs (i, j). The fluctuation -dissipation relation dictates a discrete field equation for the Ωij. In this linear, imhomogeneous equation, the "source" on the space of node pairs is generated by the thermally active nodes, subject to fluctuation and dissipation. If the network has D-dimensional topology, we may say that "thermodynamic communication lives on a discrete space with D + D dimensional topology." This is more than the trivial observation, that the domain of the field is the cartesian product of the node space with itself. For a network with nearest neighbor coupling, a continuum limit yields a boundary value problem for an ultra hyperbolic equation on D + D dimensional space. Think of it as a "wave equation on D + D dimensional Minkowski space." Domains of dependence and geometric attenuation shall behave accordingly. In this sense, the world of thermodynamic communication between pairs of nodes in D dimensions is truely D + D dimensional.
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