Fr. 135.00

Ab Initio Studies on Superconductivity in Alkali-Doped Fullerides

English · Paperback / Softback

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Description

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This book covers high-transition temperature (Tc) s-wave superconductivity and the neighboring Mott insulating phase in alkali-doped fullerides. The author presents (1) a unified theoretical description of the phase diagram and (2) a nonempirical calculation of Tc. For these purposes, the author employs an extension of the DFT+DMFT (density-functional theory + dynamical mean-field theory). He constructs a realistic electron-phonon-coupled Hamiltonian with a newly formulated downfolding method. The Hamiltonian is analyzed by means of the extended DMFT. A notable aspect of the approach is that it requires only the crystal structure as a priori knowledge. 
Remarkably, the nonempirical calculation achieves for the first time a quantitative reproduction of the experimental phase diagram including the superconductivity and the Mott phase. The calculated Tc agrees well with the experimental data, with the difference within 10 K. 
The book provides details of the computational scheme, which can also be applied to other superconductors and other phonon-related topics. The author clearly describes a superconducting mechanism where the Coulomb and electron-phonon interactions show an unusual cooperation in the superconductivity thanks to the Jahn-Teller nature of the phonons.

List of contents

Introduction to superconductivity in alkali-doped fullerides.- Methods: Ab initio downfolding and model-calculation techniques.- Application of cDFPT to alkali-doped fullerides.- Analysis of low-energy Hamiltonians with extended DMFT.- Concluding remarks.

About the author










Dr. Yusuke Nomura
Department of Applied Physics, The University of Tokyo


Summary

This book covers high-transition temperature (Tc) s-wave superconductivity and the neighboring Mott insulating phase in alkali-doped fullerides. The author presents (1) a unified theoretical description of the phase diagram and (2) a nonempirical calculation of Tc. For these purposes, the author employs an extension of the DFT+DMFT (density-functional theory + dynamical mean-field theory). He constructs a realistic electron–phonon-coupled Hamiltonian with a newly formulated downfolding method. The Hamiltonian is analyzed by means of the extended DMFT. A notable aspect of the approach is that it requires only the crystal structure as a priori knowledge. 
Remarkably, the nonempirical calculation achieves for the first time a quantitative reproduction of the experimental phase diagram including the superconductivity and the Mott phase. The calculated Tc agrees well with the experimental data, with the difference within 10 K. 
The book provides details of the computational scheme, which can also be applied to other superconductors and other phonon-related topics. The author clearly describes a superconducting mechanism where the Coulomb and electron­–phonon interactions show an unusual cooperation in the superconductivity thanks to the Jahn–Teller nature of the phonons.

Product details

Authors Yusuke Nomura
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 31.08.2018
 
EAN 9789811093548
ISBN 978-981-10-9354-8
No. of pages 143
Dimensions 155 mm x 9 mm x 235 mm
Weight 260 g
Illustrations XX, 143 p. 27 illus., 18 illus. in color.
Series Springer Theses
Springer Theses
Subjects Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

B, Physics, Solid State Physics, Theoretical, Mathematical and Computational Physics, Physics and Astronomy, Electronic Devices, Spectrum analysis, spectrochemistry, mass spectrometry, Mathematical physics, Numerical and Computational Physics, Simulation, Strongly Correlated Systems, Superconductivity, Superconductivity, Superconductors

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