Quantum thermal transistors: Harnessing quantum measurement and feedback
Researchers are actively engaged in the dynamic manipulation of quantum systems and materials to realize significant energy management and conservation breakthroughs.
Quantum statistical mechanics is a research area that extends classical statistical mechanics to systems governed by quantum theory, providing a rigorous framework for describing the equilibrium and nonequilibrium properties of many-body quantum systems. It formulates ensembles using density operators on Hilbert spaces, incorporates quantum indistinguishability and statistics (Bose–Einstein, Fermi–Dirac), and analyzes phase transitions, transport, and thermalization in interacting systems. The field employs operator algebras, spectral theory, and path integrals to study micro- to macroscopic behavior, including topics such as open quantum systems, quantum chaos, entanglement in many-body states, and the foundations of irreversibility and emergent thermodynamic laws from underlying unitary dynamics.
Researchers are actively engaged in the dynamic manipulation of quantum systems and materials to realize significant energy management and conservation breakthroughs.
National University of Singapore researchers have predicted that an exotic state of matter known as a Bose-Einstein condensate can exist at relatively high temperatures (around 50 K to 100 K) in systems comprising organic ...
Nanophysics
Dec 6, 2021
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