Colloidal heat engines: a review
Stochastic heat engines can be built using colloidal particles trapped using optical tweezers.
Here we review recent experimental realizations of microscopic heat engines. We first revisit …
Here we review recent experimental realizations of microscopic heat engines. We first revisit …
Brownian carnot engine
The Carnot cycle imposes a fundamental upper limit to the efficiency of a macroscopic motor
operating between two thermal baths. However, this bound needs to be reinterpreted at …
operating between two thermal baths. However, this bound needs to be reinterpreted at …
Adiabatic processes realized with a trapped Brownian particle
The ability to implement adiabatic processes in the mesoscale is of key importance in the
study of artificial or biological micro-and nanoengines. Microadiabatic processes have been …
study of artificial or biological micro-and nanoengines. Microadiabatic processes have been …
Kovacs memory effect with an optically levitated nanoparticle
The understanding of the dynamics of nonequilibrium cooling and heating processes at the
nanoscale is still an open problem. These processes can follow surprising relaxation paths …
nanoscale is still an open problem. These processes can follow surprising relaxation paths …
Realization of nonequilibrium thermodynamic processes using external colored noise
We investigate the dynamics of single microparticles immersed in water that are driven out of
equilibrium in the presence of an additional external colored noise. As a case study, we trap …
equilibrium in the presence of an additional external colored noise. As a case study, we trap …
Shift a laser beam back and forth to exchange heat and work in thermodynamics
Although the equivalence of heat and work has been unveiled since Joule's ingenious
experiment in 1845, they rarely originate from the same source in experiments. In this study …
experiment in 1845, they rarely originate from the same source in experiments. In this study …
Stochastic heat engine powered by active dissipation
Thermodynamics of nanoscale devices is an active area of research. Despite their noisy
surroundings, they often produce mechanical work (eg micro-heat engines) and display …
surroundings, they often produce mechanical work (eg micro-heat engines) and display …
Thermodynamics at the microscale: From effective heating to the Brownian Carnot engine
We review a series of experimental studies of the thermodynamics of nonequilibrium
processes at the microscale. In particular, in these experiments we studied the fluctuations of …
processes at the microscale. In particular, in these experiments we studied the fluctuations of …
Heat leakage in overdamped harmonic systems
We investigate the occurrence of heat leakages in overdamped nonequilibrium Brownian
harmonic systems. We exactly compute the underdamped and overdamped stochastic heats …
harmonic systems. We exactly compute the underdamped and overdamped stochastic heats …
Overdamped dynamics of a Brownian particle levitated in a Paul trap
We study the dynamics of the center of mass of a Brownian particle levitated in a Paul trap.
We mostly focus on the overdamped regime in the context of levitodynamics, comparing …
We mostly focus on the overdamped regime in the context of levitodynamics, comparing …