The physics of phonons srivastava

CPD consists of any educational activity which helps to maintain and develop knowledge, problem-solving, and technical skills with the aim to provide better health care through higher standards. Description Table of Contents. The title will be removed from your cart because it is not available in this region.

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Introduction; The frozen-phonon approach; The linear response approach; The planar force constant method.

Anharmonic decay of phonons; Lattice thermal conductivity of undoped semiconductors and insulators; Non-metallic crystals with high thermal conductivity; Thermal conductivity of complex crystals; Low-temperature thermal conductivity of doped semiconductors. Read, highlight, and take notes, across web, tablet, and phone.

The Physics of Phonons

Introduction; Dispersion curve and elementary excitations; Specific heat; Phyaics between the excitations; Kapitza resistance; Quantum evaporation. Density functional formalism; The pseudopotential method; Evaluation of integrals in sections 6.

The title will be removed from your cart because it is not available in this thd. Table of Contents Elements of crystal symmetry: HartnettAvram Bar-Cohen Limited preview - Elements of Crystal Symmetry.

The Physics of Phonons is a comprehensive theoretical discussion of the most important topics, including some topics not previously presented in book form. The student resources previously accessed via GarlandScience.

Description Table of Contents. The sections on phonons in superlattices, impure and mixed crystals, quasicrystals, phonon spectroscopy, Kapitza resistance, and quantum evaporation also contain material appearing in book form for the first time. The Bookshelf application offers access: Please accept our apologies for any inconvenience this may cause.

A discussion of anharmonicity pysics followed by the theory of lattice thermal conductivity, presented at a level far beyond that available in any other book.

My library Help Advanced Book Search. Introduction; Heat pulse technique; Superconducting tunnel junction technique; Optical techniques; Phonons from Landau levels in 2DEG; Puysics focusing and imaging; Frequency crossing phonon spectroscopy; Phonon echoes.

The Physics of Phonons - G.P Srivastava - Google Books

There have been few books devoted to the study of phonons, a major area of condensed matter physics. The book is complemented by numerous diagrams that aid srivashava and is comprehensively referenced for further study. Offline Computer — Download Bookshelf software to your desktop so you can view your eBooks with or without Internet access. Selected pages Title Page.

Theory of Lattice Thermal Conductivity. Introduction; Phonons in quasi-crystals; Structure and vibrational excitations of amorphous solids; Vibrational properties of amorphous solids; Low-temperature properties of amorphous solids.

The Physics of Phonons - CRC Press Book

The sections on phonons in superlattices, impure and mixed crystals, quasicrystals, phonon spectroscopy, Kapitza resistance, and quantum evaporation also contain material appearing in book form for the first time. Introduction; Lattice dynamics of a linear chain; Lattice dynamics of three-dimensional crystals - phenomenological models; Density of normal modes; Numerical calculation of g w ; Lattice heat capacity.

Contents Elements of Crystal Symmetry. For Instructors Request Inspection Copy.

We provide a free online form to document your learning and a certificate for your records. Introduction; Phohons vibrational modes in semiconductors; Experimental studies of long-wavelength optical phonons in mixed crystals; Theoretical models for long-wavelength optical phonons in mixed crystals; Phonon conductivity of mixed crystals. With its unprecedented wide coverage of the field, The Physics of Phonons will be indispensable to all postgraduates, advanced undergraduates, and researchers working on condensed matter physics.

Phonons in liquid helium: Request an e-inspection copy. Phonons in low dimensional solids: Greene pyhsics, Young I. Boundary scattering; Scattering by static imperfections; Phonon scattering in alloys; Anharmonic scattering; Phonon-electron scattering in doped semiconductors; Phonon scattering due to magnetic impurities in semiconductors; Phonon scattering from tunnelling states of impurities; Phonon-photon interaction.

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