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Autores principales: Meng, Fei, Xu, Junhao, Liu, Xiangjing, Dahlsten, Oscar
Formato: Preprint
Publicado: 2024
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Acceso en línea:https://arxiv.org/abs/2406.08054
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author Meng, Fei
Xu, Junhao
Liu, Xiangjing
Dahlsten, Oscar
author_facet Meng, Fei
Xu, Junhao
Liu, Xiangjing
Dahlsten, Oscar
contents We consider a foundational question in energy harvesting: given a partly random energy source, is it possible to extract the energy without also transferring randomness or accepting another thermodynamical cost? We answer this in the positive, describing scenarios and protocols where in principle energy is extracted from a field with randomness but without any randomness being transferred, and without energy dissipation. Such protocols fundamentally outperform existing methods of rectification which dissipate power, or feedback demon-like protocols which transfer randomness to the feedback system. The protocols exploit the possibility of the harvesting system taking several trajectories that lead to the same final state at a given time. We explain why these protocols do not violate basic physical principles. A key example involves the experimentally well-established phenomenon of Rabi oscillations between energy levels, exploiting the multitude of rotation axes in the state space that take the lower energy state to the excited state. The quantum system is deterministically excited to the highest energy level after interacting with the source for a fixed amount of time, irrespective of the random initial phase of the external potential.
format Preprint
id arxiv_https___arxiv_org_abs_2406_08054
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum harvester enables energy transfer without randomness transfer or dissipation
Meng, Fei
Xu, Junhao
Liu, Xiangjing
Dahlsten, Oscar
Quantum Physics
We consider a foundational question in energy harvesting: given a partly random energy source, is it possible to extract the energy without also transferring randomness or accepting another thermodynamical cost? We answer this in the positive, describing scenarios and protocols where in principle energy is extracted from a field with randomness but without any randomness being transferred, and without energy dissipation. Such protocols fundamentally outperform existing methods of rectification which dissipate power, or feedback demon-like protocols which transfer randomness to the feedback system. The protocols exploit the possibility of the harvesting system taking several trajectories that lead to the same final state at a given time. We explain why these protocols do not violate basic physical principles. A key example involves the experimentally well-established phenomenon of Rabi oscillations between energy levels, exploiting the multitude of rotation axes in the state space that take the lower energy state to the excited state. The quantum system is deterministically excited to the highest energy level after interacting with the source for a fixed amount of time, irrespective of the random initial phase of the external potential.
title Quantum harvester enables energy transfer without randomness transfer or dissipation
topic Quantum Physics
url https://arxiv.org/abs/2406.08054