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Chapter 3 is devoted to the transport or linearized Boltzmann equation, and in Chapter 4 the Lax and Phillips formalism is introduced in scattering theory for the transport equation.
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This book gives a general introduction to theoretically understand thermodynamic properties and response to applied fields of mesoscopic systems that closely relate to... Læs mere
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These achievements open up various future studies for revealing non-trivial aspects of the... Læs mere
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The book comprises two key components: (1) the experimental demonstration of the enhancement of a THz magnetic field... Læs mere
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This book provides an in-depth exploration of the mathematical and theoretical foundations of quantum teleportation.
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Extended Equations for Particles: Spin, General Theory and Exact Solution presents a unified theoretical framework for understanding relativistic wave equations describing particles with spins S = 0, 1/2, 1 and additional internal electromagnetic structure.
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This book presents a quantum framework for understanding inelastic light scattering which is consistent with the classical descriptions of Raman phenomena and Rayleigh scattering, thus creating a unified theoretical picture of light scattering.
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This book pursues an investigation at the intersection of philosophy of physics and philosophy of language, and offers a critical analysis of rival explanations of the semantic facts of quantum mechanics.
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This book serves as an introduction to the growing field of quantum many-body transport in interacting nanojunctions.
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This textbook serves to supplement existing quantum mechanics courses with the WKB (Wentzel–Kramers–Brillouin) theory for recently discovered Dirac materials, such as graphene, a dice lattice, and alpha-T3 materials.