Stochastic Thermodynamics: noise and energetics of nanoscale systems
- 日時
- 2026年5月21日(木)13:00 - 14:00 (JST)
- 講演者
-
- Jean-Charles Delvenne (Professor, Applied Mathematics, Université Catholique de Louvain, Belgium)
- 会場
- via Zoom
- セミナー室 (359号室)
- 言語
- 英語
- ホスト
- Riccardo Muolo
Stochastic thermodynamics, initiated three decades ago, aims at quantifying the fluctuations of physical observables in relation with thermodynamic quantities (such as heat or entropy production). A typical result is the Thermodynamic Uncertainty Relation, which states that a high entropy production is required to obtain a favorable noise-to-signal ratio for some observables (such as displacement of a molecular motor) in stationary out-of-equilibrium systems. It is especially relevant for nanoscale systems, where the fluctuations cannot be neglected. This includes biological systems (e.g. biological motors such as kinesin along a microtubule), electronic systems (transistor-based memories), chemical reactions, etc.
The talk will be both a tutorial on some basic results or applications, and a presentation of some recent results and perspectives.
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