An academic paper by Mário J. de Oliveira of Universidade de São Paulo, published under an Open Access license. It presents a theoretical framework for describing systems out of thermodynamic equilibrium using stochastic dynamics. The work includes an extension to quantum systems and an example of an irreversible system in a nonequilibrium stationary state.
Use Cases
- Studying non-equilibrium stationary states based on the described irreversible probability current.
- Analyzing the relationship between fluctuation and dissipation based on the framework's equilibrium condition.
- Modeling entropy production rates in irreversible systems based on the defined thermodynamic connection.
- Applying the canonical quantization of the Fokker-Planck-Kramers equation to quantum systems based on the described extension.
Strengths
- Provides a clear theoretical framework for stochastic thermodynamics, as described in the abstract.
- Includes an explicit example of an irreversible system, as mentioned in the description.
- Authored by a researcher from a recognized institution, Universidade de São Paulo.
- Available under an Open Access license, facilitating distribution and reuse.
Limitations
- Row count is unknown, which may limit suitability assessment.
- Column-level documentation is absent; field semantics must be inferred after download.
- Last update date is unknown; freshness unverified.
Provenance
- Source
- Mário J. de Oliveira, Universidade de São Paulo
- Collection Method
- Theoretical research paper.