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UID:9a0e238fe8b50b818274da9b7c4da980
CATEGORIES:Mathematical Physics Seminar
CREATED:20240730T151716
SUMMARY:Webinar: Christopher Jarzynski - Fluctuation theorems for autonomous work
LOCATION:zoom
DESCRIPTION:<p>Christopher Jarzynski – University of Maryland</p><p>Wednesday, August 1
 4th, 10:45AM EDT</p><p>Fluctuation theorems for autonomous work</p><p>In st
 ochastic thermodynamics, fluctuation theorems for the work performed on a s
 ystem of interest have been derived within a non-autonomous paradigm, in wh
 ich a parameter (such as a piston's position) is varied according to an ext
 ernally imposed schedule. I will derive analogous fluctuation theorems with
 in an autonomous paradigm, in which the externally manipulated parameter is
  replaced by a physical body, or "work source", with which the system of in
 terest exchanges energy. The work source evolves dynamically, and experienc
 es back-action as it interacts with the system of interest. This back-actio
 n introduces a new term into the autonomous fluctuation theorem, and into t
 he corresponding second-law inequality. In the limit of a work source with 
 infinite inertia, the back-action vanishes and the usual (non-autonomous) f
 luctuation theorem and second law are recovered.</p>
DTSTAMP:20260827T103211
DTSTART;TZID=America/New_York:20240814T104500
DTEND;TZID=America/New_York:20240814T114500
SEQUENCE:0
TRANSP:OPAQUE
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