HEИндивидуална стипендия2023–2025

SAT-Q · Scattering approach to thermodynamics of quantum systems

„Хоризонт Европа“ — Действия „Мария Склодовска-Кюри“

Период
2023-04-01 → 2025-03-31
Финансиране от ЕС
199 694 €
Участници
1
Схема
HORIZON-TMA-MSCA-PF-EF

Линиите свързват координатора с партньорите.

Накратко на български

Квантовата термодинамика изследва как се пренася енергията в микросвета, например как се дефинират топлината и работата при взаимодействие между квантови системи. Това помага за разбирането на фундаменталната физика и създаването на по-ефективни квантови технологии.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Scattering approach to thermodynamics of quantum systems

Thermodynamics studies energy conversion processes across nature and technology, from large to small scales. Since matter and energy are described by quantum physics at extremely small scales, there came the necessity to understand how thermodynamics, a classical theory of physics applicable at large scales, fits together with quantum physics. Thus, the field called "quantum thermodynamics" aims to understand the principles of energy conversion in the quantum regime. In particular, the field is concerned with investigating (i) how thermodynamic quantities, like heat and work, can be defined for quantum systems; (ii) the role of quantum effects, finite-size effects and fluctuations in thermodynamic quantities; (iii) how to build efficient quantum thermal machines and devices. The field of quantum thermodynamics has developed rapidly in the last two decades, becoming highly relevant both for the foundations of physics and for the development of efficient and sustainable quantum technologies. Quantum systems are especially sensitive to their surroundings, where the latter exchange energy and information with the quantum system of interest. One of the main achievements of quantum thermodynamics has been the formulation of laws of thermodynamics for quantum systems interacting with classical surroundings. In these cases, the surroundings can be treated either as an ideal source of heat or work for the quantum system. However, the question of how to formulate the laws of thermodynamics for quantum surroundings remains elusive. Rapid advancements in quantum technologies, which enable the study of quantum systems interacting with quantum surroundings, demands an urgent answer. The project "Scattering approach to thermodynamics of quantum systems" (SAT-Q) has the goal of meeting this need. In SAT-Q, the surroundings are treated quantum-mechanically, consisting of particles which travel in space and collide with a quantum system of interest. By relying on scattering, a process ubiquitous in nature and experiment, SAT-Q aims at providing a fully-quantum framework for thermodynamics which can be connected with modern quantum experiments and technologies. The first objective of SAT-Q to understand if the nature of the quantum particles, i.e. bosons or fermions, play a role in a thermodynamics of the collision event. In particular, the objective is to identify the conditions for fermions and bosons to act as heat or work sources for the quantum system. The second objective is establish a clear connection between the scattering approach and another state-of-the-art approach to quantum thermodynamics called "quantum resource theories". Resource theories, although mathematically powerful, are very abstract; establishing a connection between them and scattering theory would validate both of them and bring the former closer to experimental realization. Finally, the third objective (which is transversal to the previous objectives) is to show that the scattering approach can correctly describe energy fluctuations. Since very small and quantum systems are sensitive to external perturbations, their energy fluctuates due to interactions with surroundings; it is extremely important to verify that fluctuations in thermodynamic quantities can be captured by the scattering approach. By completing these objectives, SAT-Q is expected to significantly advance the field of quantum thermodynamics, providing a fully-quantum framework to investigate thermodynamics which can be tested and implemented with current technology.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Understanding thermodynamics in the quantum regime involves the understanding of how energy and information are exchanged between a quantum system and its surroundings. Although the laws of thermodynamics are well understood for macroscopic classical environments, advancements in quantum technology press the need for a microscopic approach which treats the surroundings as a quantum system in its own right. This project, which I call scattering approach to thermodynamics of quantum systems (SAT-Q), aims at providing such an approach. It relies on a quantum treatment of the surroundings as particles which travel in space and scatter with a quantum system. The starting point of SAT-Q are state-of-the-art results showing how the scattering approach with massive particles goes beyond existing collision-based approaches to thermodynamics of quantum systems by explaining the notions of heat and work in a fully-quantum fashion. The plan of the SAT-Q is then to extend the scattering approach to situations of greater theoretical and experimental relevance, where particle statistics are important and when incoming particles are photons. This is essential in quantum transport and optics setups, where the scattering approach can be applied. In parallel, the plan of SAT-Q is to establish a connection between the scattering approach and more abstract approaches to thermodynamics based on resource theories, bringing the latter closer to reality. Since scattering is ubiquitous in nature and physics experiments, I expect SAT-Q to produce new, foundational results in the field of quantum thermodynamics which can be directly tested in modern experiments.

Оригинален текст от CORDIS (на английски).

Участници

  • THE PROVOST, FELLOWS, FOUNDATION SCHOLARS & THE OTHER MEMBERS OF BOARD, OF THE COLLEGE OF THE HOLY & UNDIVIDED TRINITY OF QUEEN ELIZABETH NEAR DUBLIN · DublinКоординаторИрландия

Връзки

Данни: CORDIS, © Европейски съюз