Termodinámica e información en sistemas cuánticos abiertos
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Publication date
2024
Defense date
18/10/2023
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Universidad Complutense de Madrid
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Abstract
Entre las escalas macroscópica y microscópica existe una escala intermedia denominada mesoescala. A esta escala, los sistemas pequeños se ven influidos por su ruidoso entorno, siguen trayectorias fluctuantes y evitan las coherencias cuánticas. Los recientes avances en técnicas experimentales nos han permitido acceder a esta mesoescala, desvelando una rica fenomenología y proporcionando un control sin precedentes sobre nanodispositivos artificiales. El objetivo principal de esta tesis es describir la termodinámica de tales dispositivos, conectando modelos teóricos con novedosos hallazgos experimentales...
Between the macroscopic and microscopic scales, there exists an intermediate scale knownas the mesoscale. At this scale, small systems are influenced by their noisy environment, following fluctuating trajectories and avoiding quantum coherences. Recent advancements in experimental techniques have allowed us to access this mesoscale, unveiling a rich phenomenology and providing unprecedented control over artificial nano-devices. The primary objective of this thesis is to describe the thermodynamics of such devices,connecting theoretical models with novel experimental findings...
Between the macroscopic and microscopic scales, there exists an intermediate scale knownas the mesoscale. At this scale, small systems are influenced by their noisy environment, following fluctuating trajectories and avoiding quantum coherences. Recent advancements in experimental techniques have allowed us to access this mesoscale, unveiling a rich phenomenology and providing unprecedented control over artificial nano-devices. The primary objective of this thesis is to describe the thermodynamics of such devices,connecting theoretical models with novel experimental findings...
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Tesis inédita de la Universidad Complutense de Madrid, Facultad de Ciencias Físicas, leída el 18-10-2023