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Local Geometry of the Fermi Surface

Local Geometry of the Fermi Surface
Author: Natalya A. Zimbovskaya
Publisher: Springer Science & Business Media
Total Pages: 258
Release: 2012-12-06
Genre: Science
ISBN: 1461301939

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A treatment of the Fermi-liquid theory of high-frequency phenomena in metals, in paricular the effects due to local features in the geometry of the Fermi surface. The text develops a consistent theory of several effects, such as cyclotron resonances in magnetic fields normal to the surface. Topics covered include: basic equations of the Fermi-liquid theory; cyclotron Doppler on waves; local anomalies in the Fermi surface; cyclotron resonancce in metals; magneto-acoustic oscillations and the local geometry of the Fermi surface.


Transport Phenomena in Strongly Correlated Fermi Liquids

Transport Phenomena in Strongly Correlated Fermi Liquids
Author: Hiroshi Kontani
Publisher: Springer
Total Pages: 178
Release: 2013-02-11
Genre: Science
ISBN: 3642353657

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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.


Electrons in Metals

Electrons in Metals
Author: John Michael Ziman
Publisher:
Total Pages: 84
Release: 1964
Genre: Electrons
ISBN:

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The Fermi Surface

The Fermi Surface
Author: Arthur P. Cracknell
Publisher: Oxford University Press, USA
Total Pages: 588
Release: 1973
Genre: Science
ISBN:

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Theory of Quantum Transport in Metallic and Hybrid Nanostructures

Theory of Quantum Transport in Metallic and Hybrid Nanostructures
Author: Andreas Glatz
Publisher: Springer Science & Business Media
Total Pages: 307
Release: 2006-07-26
Genre: Science
ISBN: 1402047797

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The book reflects scientific developments in the physics of metallic compound based nanodevices presented at the NATO-sponsored Workshop on nanophysics held in Russia in the summer of 2003. The program tackles the most appealing problems. It brings together specialists and provides an opportunity for young researchers from the partner countries to interact with them and get actively involved in the most attractive and promising interdisciplinary area of contemporary condensed matter physics.


The Fermi Surface

The Fermi Surface
Author: Walter Ashley Harrison
Publisher:
Total Pages: 384
Release: 1960
Genre: Fermi Surfaces
ISBN:

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Handbook of Spin Transport and Magnetism

Handbook of Spin Transport and Magnetism
Author: Evgeny Y. Tsymbal
Publisher: CRC Press
Total Pages: 809
Release: 2011-08-25
Genre: Science
ISBN: 1439803773

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In the past several decades, the research on spin transport and magnetism has led to remarkable scientific and technological breakthroughs, including Albert Fert and Peter Grünberg’s Nobel Prize-winning discovery of giant magnetoresistance (GMR) in magnetic metallic multilayers. Handbook of Spin Transport and Magnetism provides a comprehensive, balanced account of the state of the art in the field known as spin electronics or spintronics. It reveals how key phenomena first discovered in one class of materials, such as spin injection in metals, have been revisited decades later in other materials systems, including silicon, organic semiconductors, carbon nanotubes, graphene, and carefully engineered nanostructures. The first section of the book offers a historical and personal perspective of the field written by Nobel Prize laureate Albert Fert. The second section addresses physical phenomena, such as GMR, in hybrid structures of ferromagnetic and normal metals. The third section discusses recent developments in spin-dependent tunneling, including magnetic tunnel junctions with ferroelectric barriers. In the fourth section, the contributors look at how to control spin and magnetism in semiconductors. In the fifth section, they examine phenomena typically found in nanostructures made from metals, superconductors, molecular magnets, carbon nanotubes, quantum dots, and graphene. The final section covers novel spin-based applications, including advanced magnetic sensors, nonvolatile magnetoresistive random access memory, and semiconductor spin-lasers. The techniques and materials of spintronics have rapidly evolved in recent years, leading to vast improvements in hard drive storage and magnetic sensing. With extensive cross-references between chapters, this seminal handbook provides a complete guide to spin transport and magnetism across various classes of materials and structures.


Differential Geometry of Curves and Surfaces

Differential Geometry of Curves and Surfaces
Author: Victor Andreevich Toponogov
Publisher: Springer Science & Business Media
Total Pages: 215
Release: 2006-09-10
Genre: Mathematics
ISBN: 0817644024

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Central topics covered include curves, surfaces, geodesics, intrinsic geometry, and the Alexandrov global angle comparision theorem Many nontrivial and original problems (some with hints and solutions) Standard theoretical material is combined with more difficult theorems and complex problems, while maintaining a clear distinction between the two levels