We report on a lossless information engine that converts nearly all available information from an error-free feedback protocol into mechanical work. Combining high-precision detection at a resolution of 1 nm with ultrafast feedback control, the engine is tuned to extract the maximum work from information on the position of a Brownian particle. We show that the work produced by the engine achieves a bound set by a generalized second law of thermodynamics, demonstrating for the first time the sharpness of this bound. We validate a generalized Jarzynski equality for error-free feedback-controlled information engines. © 2018 American Physical Society1
We determine the maximum amount of work extractable in finite time by a demon performing continuous ...
Thermodynamic uncertainty relations (TURs) set fundamental bounds on the fluctuation and dissipation...
Information is often considered as an abstract entity, but it is always stored and processed by a ph...
We report on a lossless information engine that converts nearly all available information from an er...
A Brownian information engine can induce directed motion of a Brownian particle in a single heat bat...
We investigate a Geometric Brownian Information Engine (GBIE) in the presence of an error-free feedb...
We study a two-level system controlled in a discrete feedback loop, modeling both the system and the...
Brownian information engines can extract work from thermal fluctuations by utilizing information. So...
We present an experimental realization of an information-driven Brownian motor by periodically cooli...
Measurement and feedback allows for an external agent to extract work from a system in contact with ...
Brownian information engines can extract work from thermal fluctuations by utilizing information. To...
Closed-loop or feedback controlled ratchets are Brownian motors that operate using information about...
Understanding structured information and computation in thermodynamics systems is crucial to progres...
International audienceClosed-loop or feedback controlled ratchets are Brownian motors that operate u...
Abstract.- A single bit memory system is made with a brownian particle held by an optical tweezer in...
We determine the maximum amount of work extractable in finite time by a demon performing continuous ...
Thermodynamic uncertainty relations (TURs) set fundamental bounds on the fluctuation and dissipation...
Information is often considered as an abstract entity, but it is always stored and processed by a ph...
We report on a lossless information engine that converts nearly all available information from an er...
A Brownian information engine can induce directed motion of a Brownian particle in a single heat bat...
We investigate a Geometric Brownian Information Engine (GBIE) in the presence of an error-free feedb...
We study a two-level system controlled in a discrete feedback loop, modeling both the system and the...
Brownian information engines can extract work from thermal fluctuations by utilizing information. So...
We present an experimental realization of an information-driven Brownian motor by periodically cooli...
Measurement and feedback allows for an external agent to extract work from a system in contact with ...
Brownian information engines can extract work from thermal fluctuations by utilizing information. To...
Closed-loop or feedback controlled ratchets are Brownian motors that operate using information about...
Understanding structured information and computation in thermodynamics systems is crucial to progres...
International audienceClosed-loop or feedback controlled ratchets are Brownian motors that operate u...
Abstract.- A single bit memory system is made with a brownian particle held by an optical tweezer in...
We determine the maximum amount of work extractable in finite time by a demon performing continuous ...
Thermodynamic uncertainty relations (TURs) set fundamental bounds on the fluctuation and dissipation...
Information is often considered as an abstract entity, but it is always stored and processed by a ph...