Jarzynski, Christopher.
Christopher Jarzynski American physicist
VIAF ID: 299489490 (Personal)
Permalink: http://viaf.org/viaf/299489490
Preferred Forms
- 100 0 _ ‡a Christopher Jarzynski ‡c American physicist
- 100 1 _ ‡a Jarzynski, Christopher
- 100 1 _ ‡a Jarzynski, Christopher
-
- 100 1 _ ‡a Jarzynski, Christopher
-
-
4xx's: Alternate Name Forms (14)
Works
Title | Sources |
---|---|
Apparent topologically forbidden interchange of energy surfaces under slow variation of a Hamiltonian. | |
Binless estimation of the potential of mean force. | |
Classical and quantum fluctuation theorems for heat exchange. | |
Conditional reversibility in nonequilibrium stochastic systems | |
Directed flow in nonadiabatic stochastic pumps. | |
Dissipation and lag in irreversible processes | |
Engineering Maxwell’s demon | |
Escorted free energy simulations: improving convergence by reducing dissipation. | |
Exact Formula for Currents in Strongly Pumped Diffusive Systems | |
Experimental realization of Feynman’s ratchet | |
Fast forward to the classical adiabatic invariant | |
Fluctuation relations and coarse-graining | |
Gibbs free energy change of a discrete chemical reaction event | |
Good practices in free-energy calculations | |
Heat dissipation and fluctuations in a driven quantum dot | |
Hybrid models of molecular machines and the no-pumping theorem | |
Illustrative example of the relationship between dissipation and relative entropy. | |
Information Processing and the Second Law of Thermodynamics: An Inclusive, Hamiltonian Approach | |
Lag inequality for birth–death processes with time-dependent rates | |
Low-dimensional manifold of actin polymerization dynamics | |
Microcanonical work and fluctuation relations for an open system: An exactly solvable model. | |
Nonequilibrium Equality for Free Energy Differences | |
Nonequilibrium fluctuation theorems from equilibrium fluctuations | |
Nonequilibrium statistical physics of small systems, 2013: | |
Nonequilibrium thermodynamics at the microscale: Work relations and the second law | |
Nonperturbative embedding for highly nonlocal Hamiltonians | |
Number of trials required to estimate a free-energy difference, using fluctuation relations | |
Optimal Probabilistic Work Extraction beyond the Free Energy Difference with a Single-Electron Device | |
Out of equilibrium | |
Path-integral analysis of fluctuation theorems for general Langevin processes | |
A Programmable Mechanical Maxwell's Demon | |
Quantifying dissipation in actomyosin networks | |
Quantum Chaotic Environments, the Butterfly Effect, and Decoherence | |
Quantum-Classical Correspondence Principle for Work Distributions | |
Rare events and the convergence of exponentially averaged work values | |
Replica exchange with nonequilibrium switches: enhancing equilibrium sampling by increasing replica overlap | |
Second laws for an information driven current through a spin valve. | |
Shortcuts to adiabaticity using flow fields | |
Similarities and differences between non-equilibrium steady states and time-periodic driving in diffusive systems | |
Stochastic and Macroscopic Thermodynamics of Strongly Coupled Systems | |
Targeted free energy perturbation | |
The thermodynamics of writing a random polymer | |
Thermodynamique stochastique : pilotage de micro-oscillateurs et application à l'étude et l'optimisation du traitement de l’information. | |
Time : Poincaré Seminar 2010 | |
Unbiased estimators for spatial distribution functions of classical fluids. | |
Universal energy diffusion in a quivering billiard. | |
Verification of the Crooks fluctuation theorem and recovery of RNA folding free energies | |
Verification of the quantum nonequilibrium work relation in the presence of decoherence | |
Work and information processing in a solvable model of Maxwell's demon | |
Work distribution for the adiabatic compression of a dilute and interacting classical gas. |