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DTSTAMP:20260923T014046Z
DTSTART;TZID=America/New_York:20261006T120000
DTEND;TZID=America/New_York:20261006T133000
SUMMARY:Aditya Jha - The Anatomy of Thermal Equilibrium and Fluctuation Theorems
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TZID:America/New_York
LOCATION: University of Pittsburgh\, 4200 Fifth Avenue\, Pittsburgh\, United States\, 15260
DESCRIPTION:<p>The Center for Philosophy of Science at the University of Pittsburgh invites you to join us for our Lunch Time Talk. Attend in person at 1117 Cathedral of Learning or visit our live stream on YouTube at&nbsp\;<a  href="https://www.youtube.com/channel/UCrRp47ZMXD7NXO3a9Gyh2sg"  data-cke-saved-href="https://www.youtube.com/channel/UCrRp47ZMXD7NXO3a9Gyh2sg">https://www.youtube.com/channel/UCrRp47ZMXD7NXO3a9Gyh2sg</a>.</p>\n<p><strong>LTT: <a data-cke-saved-href="https://www.centerphilsci.pitt.edu/fellows/jha-aditya/">Aditya Jha</a></strong></p>\n<p>Tuesday\, October 6th @ 12:00 pm - 1:30 pm EST</p>\n<p><strong>Title:&nbsp\;The Anatomy of Thermal Equilibrium and Fluctuation Theorems</strong></p>\n<p><strong>Abstract:</strong></p>\n<p>In this talk\, I explore the relationship between various fluctuation theorems and the Second Law in statistical thermodynamics and argue against a commonly held perception\, namely that fluctuations somehow constitute a "violation" of the Second Law. I instead suggest that the Second Law restricts the statistical form of fluctuations not only in equilibrium regimes but also in far-from-equilibrium regimes. This restriction\, I show\, emerges from the anatomy of statistical (thermal) equilibrium\, which\, properly understood\, is a conjunction of three conditions: the stationarity of an ensemble\, its detailed balance\, and a compositional condition on energies and probabilities\, grounded in the operational content of the Second Law\, that forces probability to be logarithmically linear in energy. I demonstrate how fluctuation theorems exploit this anatomy: in equilibrium through the global detailed balance of the system itself\, and in far-from-equilibrium regimes through local detailed balance\, a condition that the thermal environment imposes locally on a system's coarse-grained transitions without the system itself being in equilibrium.</p>\n<p>This talk will also be available live streamed on:</p>\n<p>Zoom at&nbsp\;&nbsp\;<a  href="https://pitt.zoom.us/j/98055239588"  data-cke-saved-href="https://pitt.zoom.us/j/98055239588">https://pitt.zoom.us/j/98055239588</a></p>\n<p>YouTube at <a data-cke-saved-href="https://www.youtube.com/channel/UCrRp47ZMXD7NXO3a9Gyh2sg">https://www.youtube.com/channel/UCrRp47ZMXD7NXO3a9Gyh2sg</a>.</p>
ORGANIZER;CN=Edouard Machery:
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