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A01=V. Tripathi
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Conduction Electrons
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Degenerate Fermi Gas
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Distribution Function
Electron Relaxation Rate
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Fermi Golden Rule
Fermi Liquid
Fermi Liquid Theory
Fermi Surface
Ferromagnetic Instability
Hertz Theory
Impurity Spin
Kondo Model
Kondo Temperature
Landau Fermi Liquid Theory
Landau Fermi Liquids
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Magnetic Impurity
Many-Body Physics
Marginal Fermi Liquid
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Particle Hole Pairs
Pauli Spin Susceptibility
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Quantum Critical Point
Quantum Liquids
Quasiparticle Energy
Single Particle Excitation
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Specific Heat Coefficient
Spin Flip Scattering
Spin Fluctuations
Superconductor

Landau Fermi Liquids and Beyond

English

By (author): V. Tripathi

This book consolidates the older and more recent concepts on weakly-interacting fermions where traditional many-body techniques are adequate. Targeting primarily the advanced undergraduates and graduates, the author has included plenty of examples and problems from contemporary topics of research.

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€142.99
A01=V. TripathiAge Group_UncategorizedAuthor_V. Tripathiautomatic-updateCategory1=Non-FictionCategory=PBWCategory=PHFCCategory=PHQCategory=PSAConduction ElectronsCOP=United StatesDegenerate Fermi GasDelivery_Delivery within 10-20 working daysDistribution FunctionElectron Relaxation Rateeq_isMigrated=2eq_non-fictioneq_scienceFermi Golden RuleFermi LiquidFermi Liquid TheoryFermi SurfaceFerromagnetic InstabilityHertz TheoryImpurity SpinKondo ModelKondo TemperatureLandau Fermi Liquid TheoryLandau Fermi LiquidsLanguage_EnglishMagnetic ImpurityMany-Body PhysicsMarginal Fermi LiquidPA=AvailableParticle Hole PairsPauli Spin SusceptibilityPrice_€100 and abovePS=ActiveQuantum Critical PointQuantum LiquidsQuasiparticle EnergySingle Particle ExcitationsoftlaunchSpecific Heat CoefficientSpin Flip ScatteringSpin FluctuationsSuperconductor
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Product Details
  • Weight: 430g
  • Dimensions: 156 x 234mm
  • Publication Date: 22 Feb 2018
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Language: English
  • ISBN13: 9781498755436

About V. Tripathi

Vikram Tripathi obtained his B. Sc (H) Physics degree from St. Stephen's College, University of Delhi in 1994. During 1994-2000, he was at Trinity College, University of Cambridge studying for his Natural Sciences Tripos and M.Sci (Physics) (1994-97); and Ph.D. (Physics) (1997-2000). After two years of postdoctoral work at Rutgers University, New Jersey, USA, he returned to the University of Cambridge to take up a four-year Junior Research Fellowship at Trinity College (2002-06). He is an Associate Professor in the Department of Theoretical Physics at the Tata Institute of Fundamental Research (TIFR) and has been with TIFR since September 2006. His general research interest is in the area of strongly correlated electron systems (SCES) - quantum systems where particle interactions are significant compared with their kinetic energies. His research work since 2006 can be categorized under three broad topics in strongly correlated electron systems, and involves both purely theoretical work as well as collaboration with experimentalists: 1. Electronic transport and noise, magnetism, quasi long-range electronic order in mesoscopic structures; 2. Coulomb effects in strongly disordered superconductors; 3. Impurity effects in quantum spin-liquids.

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