Hybrid Approach for Studying Defects and Electronic Properties (Paperback)


Systematic studies of thermophysical properties of alloyed 123 structure high Tc superconductors are required due to an increasing number of applications of these compounds rather than pure YBCO to improve bulk and grain boundary transport and other properties. Hybrid approach is developed to study lattice statics and dynamics, strain effect, elasticity, thermal expansion, congruent melting, charge transfer, chain oxygen order disorder transition, defect, space charge, and strain field in 123-cuprate. Besides, electronic structure, structure factors, and X ray absorption spectrum of MgB2 are studied by first principles method. These studies suggest that the electronic structure of MgB2 is highly anisotopic which is the origin of the multi superconducting gaps in this material.

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Product Description

Systematic studies of thermophysical properties of alloyed 123 structure high Tc superconductors are required due to an increasing number of applications of these compounds rather than pure YBCO to improve bulk and grain boundary transport and other properties. Hybrid approach is developed to study lattice statics and dynamics, strain effect, elasticity, thermal expansion, congruent melting, charge transfer, chain oxygen order disorder transition, defect, space charge, and strain field in 123-cuprate. Besides, electronic structure, structure factors, and X ray absorption spectrum of MgB2 are studied by first principles method. These studies suggest that the electronic structure of MgB2 is highly anisotopic which is the origin of the multi superconducting gaps in this material.

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Product Details

General

Imprint

Lap Lambert Academic Publishing

Country of origin

Germany

Release date

September 2010

Availability

Expected to ship within 10 - 15 working days

First published

September 2010

Authors

Dimensions

229 x 152 x 12mm (L x W x T)

Format

Paperback - Trade

Pages

200

ISBN-13

978-3-8383-9311-7

Barcode

9783838393117

Categories

LSN

3-8383-9311-2



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