Isotope Low-Dimensional Structures: Elementary Excitations and Applications

Author:   Vladimir G. Plekhanov
Publisher:   Springer-Verlag Berlin and Heidelberg GmbH & Co. KG
Edition:   2012 ed.
ISBN:  

9783642286124


Pages:   96
Publication Date:   09 May 2012
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Isotope Low-Dimensional Structures: Elementary Excitations and Applications


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Overview

This Briefs volume describes the properties and structure of  elementary excitations in isotope low-dimensional structures. Without assuming prior knowledge of quantum physics, the present book provides the basic knowledge needed to understand the recent developments in the sub-disciplines of nanoscience isotopetronics, novel device concepts and materials for nanotechnology. It is the first and comprehensive interdisciplinary account of the newly developed scientific discipline isotopetronics.

Full Product Details

Author:   Vladimir G. Plekhanov
Publisher:   Springer-Verlag Berlin and Heidelberg GmbH & Co. KG
Imprint:   Springer-Verlag Berlin and Heidelberg GmbH & Co. K
Edition:   2012 ed.
Dimensions:   Width: 15.50cm , Height: 0.50cm , Length: 23.50cm
Weight:   0.454kg
ISBN:  

9783642286124


ISBN 10:   3642286127
Pages:   96
Publication Date:   09 May 2012
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

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2002 Head of Department of Mathematics and Physics in Computer Science College 2001 Professor of Mathematics in Computer Science College. 1982 Full Professor in Institute of Physics of the Estonian Academy of Sciences (IPEAS). 1994-1995: Scientific Director of CSC. 1993-1994: Head of the Department of Applied Mathematics, International University (IU), Tallin, Estonia 1992-1994: Professor of Applied Mathematics (IU) Discovered the isotope effect of exciton binding energy (Wannier-Mott exciton model), experimental evidence of self-trapped electrons and quantum diffusion of Vk center in insulators as well as the effect of the isotope disorder on the phonon and exciton states

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