03615nam 22005175 450 991030053180332120200705032631.03-319-93964-510.1007/978-3-319-93964-3(CKB)3850000000036145(MiAaPQ)EBC5448097(DE-He213)978-3-319-93964-3(PPN)229503527(EXLCZ)99385000000003614520180704d2018 u| 0engurcnu||||||||txtrdacontentcrdamediacrrdacarrierThermodynamics and Synchronization in Open Quantum Systems /by Gonzalo Manzano Paule1st ed. 2018.Cham :Springer International Publishing :Imprint: Springer,2018.1 online resource (424 pages)Springer Theses, Recognizing Outstanding Ph.D. Research,2190-50533-319-93963-7 Part 1: Introduction to Open Quantum Systems and Quantum Thermodynamics -- Basic Concepts -- Open Quantum System Dynamics -- Quantum Thermodynamics -- Part 2: Quantum Synchronization Induced by Dissipation in Many-Body Systems -- Transient Synchronization and Quantum Correlations -- Noiseless Subsystems and Synchronization -- Dissipative Complex Quantum Networks -- Part 3: Quantum Fluctuation Theorems and Entropy Production -- Fluctuation Theorems for Quantum Maps -- Entropy Production Fluctuations in Quantum Process -- Simple Applications of the Entropy Production FT’s -- Part 4: Quantum Thermal Machines -- Thermodynamic Power of the Squeezed Thermal Reservoir.-Performance of Autonomous Quantum Thermal Machines -- Part 5: Conclusions -- Summary and Outlook.This book explores some of the connections between dissipative and quantum effects from a theoretical point of view. It focuses on three main topics: the relation between synchronization and quantum correlations, the thermodynamical properties of fluctuations, and the performance of quantum thermal machines. Dissipation effects have a profound impact on the behavior and properties of quantum systems, and the unavoidable interaction with the surrounding environment, with which systems continuously exchange information, energy, angular momentum and matter, is ultimately responsible for decoherence phenomena and the emergence of classical behavior. However, there is a wide intermediate regime in which the interplay between dissipative and quantum effects gives rise to a plethora of rich and striking phenomena that has just started to be understood. In addition, the recent breakthrough techniques in controlling and manipulating quantum systems in the laboratory have made this phenomenology accessible in experiments and potentially applicable.Springer Theses, Recognizing Outstanding Ph.D. Research,2190-5053ThermodynamicsQuantum theoryThermodynamicshttps://scigraph.springernature.com/ontologies/product-market-codes/P21050Quantum Physicshttps://scigraph.springernature.com/ontologies/product-market-codes/P19080Thermodynamics.Quantum theory.Thermodynamics.Quantum Physics.530.12011Manzano Paule Gonzaloauthttp://id.loc.gov/vocabulary/relators/aut835587MiAaPQMiAaPQMiAaPQBOOK9910300531803321Thermodynamics and Synchronization in Open Quantum Systems1867709UNINA00719nam 2200265 450 99665927250331620250519105058.088-204-2105-420250519d1981----km y0itay5003 baitaITy 00 yDalla proprietà all'impresaEttore GliozziMilanoFranco Angeli1981142 p.22 cmProprietà privataAziendeBNCF346.45065GLIOZZI,Ettore<1936->139818ITcbaREICAT996659272503316XVI.7.C. 82FBUOXVI.7.C.BKFBUODalla proprietà all'impresa195745UNISA