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Physics of F-electrons and Related Phenomena in Strongly Correlated Systems

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Release : 1992
Genre : Electrons
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Physics of F-electrons and Related Phenomena in Strongly Correlated Systems by : Osamu Sakai

Download or read book Physics of F-electrons and Related Phenomena in Strongly Correlated Systems written by Osamu Sakai. This book was released on 1992. Available in PDF, EPUB and Kindle. Book excerpt:

Quantum Field Theory in Strongly Correlated Electronic Systems

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Release : 1999-09-20
Genre : Science
Kind : eBook
Book Rating : 815/5 ( reviews)

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Book Synopsis Quantum Field Theory in Strongly Correlated Electronic Systems by : Naoto Nagaosa

Download or read book Quantum Field Theory in Strongly Correlated Electronic Systems written by Naoto Nagaosa. This book was released on 1999-09-20. Available in PDF, EPUB and Kindle. Book excerpt: In this book the author extends the concepts introduced in his Quantum Field Theory in Condensed Matter Physics to situations in which the strong electronic correlations are crucial for the understanding of the observed phenomena. Starting from a model field theory to illustrate the basic ideas, more complex systems are analyzed in turn. A special chapter is devoted to the description of antiferromagnets, doped Mott insulators, and quantum Hall liquids from the point of view of gauge theory.

Strongly Correlated Electrons in Two Dimensions

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Release : 2017-05-25
Genre : Science
Kind : eBook
Book Rating : 383/5 ( reviews)

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Book Synopsis Strongly Correlated Electrons in Two Dimensions by : Sergey Kravchenko

Download or read book Strongly Correlated Electrons in Two Dimensions written by Sergey Kravchenko. This book was released on 2017-05-25. Available in PDF, EPUB and Kindle. Book excerpt: The properties of strongly correlated electrons confined in two dimensions are a forefront area of modern condensed matter physics. In the past two or three decades, strongly correlated electron systems have garnered a great deal of scientific interest due to their unique and often unpredictable behavior. Two of many examples are the metallic state and the metal–insulator transition discovered in 2D semiconductors: phenomena that cannot occur in noninteracting systems. Tremendous efforts have been made, in both theory and experiment, to create an adequate understanding of the situation; however, a consensus has still not been reached. Strongly Correlated Electrons in Two Dimensions compiles and details cutting-edge research in experimental and theoretical physics of strongly correlated electron systems by leading scientists in the field. The book covers recent theoretical work exploring the quantum criticality of Mott and Wigner–Mott transitions, experiments on the metal–insulator transition and related phenomena in clean and dilute systems, the effect of spin and isospin degrees of freedom on low-temperature transport in two dimensions, electron transport near the 2D Mott transition, experimentally observed temperature and magnetic field dependencies of resistivity in silicon-based systems with different levels of disorder, and microscopic theory of the interacting electrons in two dimensions. Edited by Sergey Kravchenko, a prominent experimentalist, this book will appeal to advanced graduate-level students and researchers specializing in condensed matter physics, nanophysics, and low-temperature physics, especially those involved in the science of strong correlations, 2D semiconductors, and conductor–insulator transitions.

Strongly Correlated Systems, Coherence And Entanglement

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Release : 2007-07-12
Genre : Technology & Engineering
Kind : eBook
Book Rating : 831/5 ( reviews)

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Book Synopsis Strongly Correlated Systems, Coherence And Entanglement by : J M P Carmelo

Download or read book Strongly Correlated Systems, Coherence And Entanglement written by J M P Carmelo. This book was released on 2007-07-12. Available in PDF, EPUB and Kindle. Book excerpt: This volume presents a collection of review papers on recent work in the connected areas of strongly correlated systems, the effects of coherence on macroscopic systems, and entanglement in quantum systems. These areas have attracted considerable interest due to their complexity and associated unexpected nontrivial phenomena, and also due to their potential applications in various fields, from materials science to information technology. The coverage includes strongly correlated electronic systems such as low-dimensional complex materials, ordered and disordered spin systems, and aspects of the physics of manganites and graphene, both in equilibrium and far from equilibrium.

Transport Phenomena in Strongly Correlated Fermi Liquids

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Release : 2013-02-12
Genre : Science
Kind : eBook
Book Rating : 666/5 ( reviews)

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Book Synopsis Transport Phenomena in Strongly Correlated Fermi Liquids by : Hiroshi Kontani

Download or read book Transport Phenomena in Strongly Correlated Fermi Liquids written by Hiroshi Kontani. This book was released on 2013-02-12. Available in PDF, EPUB and Kindle. Book excerpt: In conventional metals, various transport coefficients are scaled according to the quasiparticle relaxation time, \tau, which implies that the relaxation time approximation (RTA) holds well. However, such a simple scaling does not hold in many strongly correlated electron systems, reflecting their unique electronic states. The most famous example would be cuprate high-Tc superconductors (HTSCs), where almost all the transport coefficients exhibit a significant deviation from the RTA results. To better understand the origin of this discrepancy, we develop a method for calculating various transport coefficients beyond the RTA by employing field theoretical techniques. Near the magnetic quantum critical point, the current vertex correction (CVC), which describes the electron-electron scattering beyond the relaxation time approximation, gives rise to various anomalous transport phenomena. We explain anomalous transport phenomena in cuprate HTSCs and other metals near their magnetic or orbital quantum critical point using a uniform approach. We also discuss spin related transport phenomena in strongly correlated systems. In many d- and f-electron systems, the spin current induced by the spin Hall effect is considerably greater because of the orbital degrees of freedom. This fact attracts much attention due to its potential application in spintronics. We discuss various novel charge, spin and heat transport phenomena in strongly correlated metals.

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