Electronic Structure Calculations on Graphics Processing Units – From Quantum Chemistry to Condensed Matter Physics : From Quantum Chemistry to Condensed Matter Physics
Book Details
Format
Hardback or Cased Book
ISBN-10
1118661788
ISBN-13
9781118661789
Publisher
John Wiley & Sons Inc
Imprint
John Wiley & Sons Inc
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Apr 15th, 2016
Print length
368 Pages
Weight
722 grams
Dimensions
17.80 x 25.10 x 2.20 cms
Product Classification:
Communications engineering / telecommunicationsGraphics programming
Ksh 23,400.00
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Electronic Structure Calculations on Graphics Processing Units: From Quantum Chemistry to Condensed Matter Physics combines an accessible introduction to GPUs and GPU programming with a comprehensive overview of the present state of GPU accelerated quantum mechanical methods, their implementation, as well as representative applications.
Electronic Structure Calculations on Graphics Processing Units: From Quantum Chemistry to Condensed Matter Physics provides an overview of computing on graphics processing units (GPUs), a brief introduction to GPU programming, and the latest examples of code developments and applications for the most widely used electronic structure methods. The book covers all commonly used basis sets including localized Gaussian and Slater type basis functions, plane waves, wavelets and real-space grid-based approaches. The chapters expose details on the calculation of two-electron integrals, exchange-correlation quadrature, Fock matrix formation, solution of the self-consistent field equations, calculation of nuclear gradients to obtain forces, and methods to treat excited states within DFT. Other chapters focus on semiempirical and correlated wave function methods including density fitted second order Moller-Plesset perturbation theory and both iterative and perturbative single- and multireference coupled cluster methods. Electronic Structure Calculations on Graphics Processing Units: From Quantum Chemistry to Condensed Matter Physics presents an accessible overview of the field for graduate students and senior researchers of theoretical and computational chemistry, condensed matter physics and materials science, as well as software developers looking for an entry point into the realm of GPU and hybrid GPU/CPU programming for electronic structure calculations.
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