abstract: Computer simulations of the Ising model exhibit white noise if thermal fluctuations are governed by Boltzmann's factor alone; whereas we find that the same model exhibits 1/f noise if Boltzmann's factor is extended to include local alignment entropy to all orders. We show that this nonlinear correction maintains maximum entropy during equilibrium fluctuations. Indeed, as with the usual way to resolve Gibbs' paradox that avoids entropy reduction during reversible processes, the correction yields the statistics of indistinguishable particles. The correction also ensures conservation of energy if an instantaneous contribution from local entropy is included. Thus, a common mechanism for 1/f noise comes from assuming that finite-size f...
Fluctuation theorems (FTs), such as the Crooks or Jarzynski equalities (JEs), have become an importa...
We have analyzed the spectral density of fluctuations of the energy flux through a mesoscopic constr...
We consider globally coupled random frequency oscillators under thermal noise, and explore the synch...
The noise from most materials exhibits a power-spectral density that tends to diverge as S(f) ∝ 1/f ...
The Boltzmann factor comes from the linear change in entropy of an infinite heat bath during a loca...
Almost all processes -- highly correlated, weakly correlated, or correlated not at all---ex...
abstract: Fluctuations with a power spectral density depending on frequency as $1/f^\alpha$ ($0<\alp...
We present a treatment which describes the simultaneous effect of thermal and external fluctuations ...
For systems that are in equilibrium, fluctuations can be understood through interactions with exter...
Local thermodynamic equilibrium(LTE) plays a crucial role in statistical mechanics and thermodynamic...
abstract: Nanothermodynamics extends standard thermodynamics to facilitate finite-size effects on th...
Statistical mechanics harmonizes mechanical and thermodynamical quantities, via the notion of local ...
The long-standing contrast between Boltzmannâs and Gibbsâ approach to statistical thermodynamics has...
We study the statistical mechanics of thermal conduction in a classical many-body system that is in ...
The entropy per particle in most Monte-Carlo simulations is size dependent due to correlated energy...
Fluctuation theorems (FTs), such as the Crooks or Jarzynski equalities (JEs), have become an importa...
We have analyzed the spectral density of fluctuations of the energy flux through a mesoscopic constr...
We consider globally coupled random frequency oscillators under thermal noise, and explore the synch...
The noise from most materials exhibits a power-spectral density that tends to diverge as S(f) ∝ 1/f ...
The Boltzmann factor comes from the linear change in entropy of an infinite heat bath during a loca...
Almost all processes -- highly correlated, weakly correlated, or correlated not at all---ex...
abstract: Fluctuations with a power spectral density depending on frequency as $1/f^\alpha$ ($0<\alp...
We present a treatment which describes the simultaneous effect of thermal and external fluctuations ...
For systems that are in equilibrium, fluctuations can be understood through interactions with exter...
Local thermodynamic equilibrium(LTE) plays a crucial role in statistical mechanics and thermodynamic...
abstract: Nanothermodynamics extends standard thermodynamics to facilitate finite-size effects on th...
Statistical mechanics harmonizes mechanical and thermodynamical quantities, via the notion of local ...
The long-standing contrast between Boltzmannâs and Gibbsâ approach to statistical thermodynamics has...
We study the statistical mechanics of thermal conduction in a classical many-body system that is in ...
The entropy per particle in most Monte-Carlo simulations is size dependent due to correlated energy...
Fluctuation theorems (FTs), such as the Crooks or Jarzynski equalities (JEs), have become an importa...
We have analyzed the spectral density of fluctuations of the energy flux through a mesoscopic constr...
We consider globally coupled random frequency oscillators under thermal noise, and explore the synch...