Energy Cost of Controlling Mesoscopic Quantum Systems

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作者
Department of Physics, University of Massachusetts at Boston, Boston [1 ]
MA
02125, United States
不详 [2 ]
MD
20783, United States
不详 [3 ]
LA
70803, United States
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Costs - Superconducting materials - Ground state - Quantum optics;
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摘要
We determine the minimum energy required to control the evolution of any mesoscopic quantum system in the presence of arbitrary Markovian noise processes. This result provides the mesoscopic equivalent of the fundamental cost of refrigeration, sets the minimum power consumption of mesoscopic devices that operate out of equilibrium, and allows one to calculate the efficiency of any control protocol, whether it be open-loop or feedback control. As examples, we calculate the energy cost of maintaining a qubit in the ground state and the efficiency of resolved-sideband cooling of nano-mechanical resonators, and discuss the energy cost of quantum information processing. © 2015 American Physical Society.
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