Planewaves, Pseudopotentials and the LAPW Method

Nonfiction, Science & Nature, Technology, Material Science, Electronics
Cover of the book Planewaves, Pseudopotentials and the LAPW Method by David J. Singh, Springer US
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: David J. Singh ISBN: 9781475723120
Publisher: Springer US Publication: June 29, 2013
Imprint: Springer Language: English
Author: David J. Singh
ISBN: 9781475723120
Publisher: Springer US
Publication: June 29, 2013
Imprint: Springer
Language: English

Over the past decade the world's technological and industrial base has become increasingly dependent on advanced materials. There is every indication that this trend will accelerate and that progress in many areas will increasingly depend on the development of new materials and processing techniques. A second and equally significant trend is the continuing ascent of the information technologies, which now touch almost every aspect of life in some way. In this environment it is natural that there is a strong interest in using numerical modeling in materials science.
With its extreme accuracy and reasonable computational efficiency, the linearized augmented plane wave (LAPW) method has emerged as the standard by which density functional calculations for transition metal and rare-earth containing materials are judged. Planewaves, Pseudopotentials and the LAPW Method presents a thorough and self-contained exposition of the LAPW method, making this powerful technique more accessible to researchers and students who have some familiarity with local density approximation calculations. Theory is discussed, but the emphasis is on how practical implementation proceeds. In addition, the author suggests future directions for adapting the LAPW method to simulations of complex materials requiring large unit cells. He does this by elucidating the connections between the LAPW method and planewave pseudopotential approaches and by showing how Car--Parrinello type algorithms can be adapted to the LAPW method.
Planewaves, Pseudopotentials and the LAPW Method is a valuable resource for researchers already involved in electronic structure calculations, as well as for newcomers seeking quick mastery of the LAPW technique.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Over the past decade the world's technological and industrial base has become increasingly dependent on advanced materials. There is every indication that this trend will accelerate and that progress in many areas will increasingly depend on the development of new materials and processing techniques. A second and equally significant trend is the continuing ascent of the information technologies, which now touch almost every aspect of life in some way. In this environment it is natural that there is a strong interest in using numerical modeling in materials science.
With its extreme accuracy and reasonable computational efficiency, the linearized augmented plane wave (LAPW) method has emerged as the standard by which density functional calculations for transition metal and rare-earth containing materials are judged. Planewaves, Pseudopotentials and the LAPW Method presents a thorough and self-contained exposition of the LAPW method, making this powerful technique more accessible to researchers and students who have some familiarity with local density approximation calculations. Theory is discussed, but the emphasis is on how practical implementation proceeds. In addition, the author suggests future directions for adapting the LAPW method to simulations of complex materials requiring large unit cells. He does this by elucidating the connections between the LAPW method and planewave pseudopotential approaches and by showing how Car--Parrinello type algorithms can be adapted to the LAPW method.
Planewaves, Pseudopotentials and the LAPW Method is a valuable resource for researchers already involved in electronic structure calculations, as well as for newcomers seeking quick mastery of the LAPW technique.

More books from Springer US

Cover of the book Risk Evaluation and Management by David J. Singh
Cover of the book The Printing Ink Manual by David J. Singh
Cover of the book Forensic Neuropsychology by David J. Singh
Cover of the book Bioreaction Engineering Principles by David J. Singh
Cover of the book Molecular and Clinical Advances in Anticancer Drug Resistance by David J. Singh
Cover of the book MEMS Materials and Processes Handbook by David J. Singh
Cover of the book Heart Function in Health and Disease by David J. Singh
Cover of the book The Psychology of Secrets by David J. Singh
Cover of the book Superconducting Electron-Optic Devices by David J. Singh
Cover of the book SPI Plastics Engineering Handbook of the Society of the Plastics Industry, Inc. by David J. Singh
Cover of the book State Space Grids by David J. Singh
Cover of the book Prehistoric Iberia by David J. Singh
Cover of the book Environmental Problems of the City Centres by David J. Singh
Cover of the book Operation of Restructured Power Systems by David J. Singh
Cover of the book Field-Programmable Analog Arrays by David J. Singh
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy