We discuss the thermodynamic aspects of a single qubit based device, powered by weak quantum measurements, and feedback controlled by a quantum Maxwell's demon. We discuss both discrete and time-continuous operation of the measurement based device at finite temperature of the reservoir. In the discrete example where a demon acquires information via discrete weak measurements, we find that the thermodynamic variables including the heat exchanged, extractable work, and the entropy produced are completely determined by an information theoretic measure of the demon's perceived arrow of time. We also discuss a realistic time-continuous operation of the device where the feedback is applied after a sequence of weak measurements. In the time-contin...
We use continuous weak measurements of a driven superconducting qubit to experimentally study the in...
We consider a quantum system driven out of equilibrium via a small Hamiltonian perturbation. Buildin...
A Maxwell's demon is a device that gets information and trades it in for thermodynamic advantage, in...
Generalized measurements may allow the control of its back-action on the quantum system by interpola...
What is the minimum time required to take a temperature? In this paper, we solve this question for a...
We demonstrate a quantum clock, near zero temperature, driven in part by entropy reduction through m...
We discuss quantum entanglement in the context of the thermodynamic arrow of time. We review the rol...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
Maxwell's demon is the quintessential example of information control, which is necessary for designi...
In order to unitarily evolve a quantum system, an agent requires knowledge of time, a parameter whic...
We revisit quantum Maxwell demon in thermodynamic feedback cycle in the steady-state regime. We deri...
Maxwell's Demon is at the heart of the interrelation between quantum information processing and ther...
The thermodynamics of quantum systems driven out of equilibrium has attracted increasing attention i...
This is the author accepted manuscript. The final version is available from National Academy of Scie...
We use continuous weak measurements of a driven superconducting qubit to experimentally study the in...
We consider a quantum system driven out of equilibrium via a small Hamiltonian perturbation. Buildin...
A Maxwell's demon is a device that gets information and trades it in for thermodynamic advantage, in...
Generalized measurements may allow the control of its back-action on the quantum system by interpola...
What is the minimum time required to take a temperature? In this paper, we solve this question for a...
We demonstrate a quantum clock, near zero temperature, driven in part by entropy reduction through m...
We discuss quantum entanglement in the context of the thermodynamic arrow of time. We review the rol...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
In a quantum Stirling heat engine, the heat exchanged with two thermal baths is partly utilized for ...
Maxwell's demon is the quintessential example of information control, which is necessary for designi...
In order to unitarily evolve a quantum system, an agent requires knowledge of time, a parameter whic...
We revisit quantum Maxwell demon in thermodynamic feedback cycle in the steady-state regime. We deri...
Maxwell's Demon is at the heart of the interrelation between quantum information processing and ther...
The thermodynamics of quantum systems driven out of equilibrium has attracted increasing attention i...
This is the author accepted manuscript. The final version is available from National Academy of Scie...
We use continuous weak measurements of a driven superconducting qubit to experimentally study the in...
We consider a quantum system driven out of equilibrium via a small Hamiltonian perturbation. Buildin...
A Maxwell's demon is a device that gets information and trades it in for thermodynamic advantage, in...