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Heavily-Doped 2D-Quantized Structures and the Einstein Relation

This book presents the Einstein Relation(ER) in two-dimensional (2-D) Heavily Doped(HD) Quantized Structures. The materials considered are quantized structures of HD non-linear optical, III-V, II-VI, Ge, Te, Platinum Antimonide, stressed materials, GaP, Gallium Antimonide, II-V, Bismuth Telluride to...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Ghatak, Kamakhya P. (Autor), Bhattacharya, Sitangshu (Autor)
Autor Corporativo: SpringerLink (Online service)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Cham : Springer International Publishing : Imprint: Springer, 2015.
Edición:1st ed. 2015.
Colección:Springer Tracts in Modern Physics, 260
Temas:
Acceso en línea:Texto Completo

MARC

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245 1 0 |a Heavily-Doped 2D-Quantized Structures and the Einstein Relation  |h [electronic resource] /  |c by Kamakhya P. Ghatak, Sitangshu Bhattacharya. 
250 |a 1st ed. 2015. 
264 1 |a Cham :  |b Springer International Publishing :  |b Imprint: Springer,  |c 2015. 
300 |a XL, 347 p. 58 illus.  |b online resource. 
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490 1 |a Springer Tracts in Modern Physics,  |x 1615-0430 ;  |v 260 
505 0 |a From the Contents: The ER in Quantum Wells (QWs) of Heavily Doped(HD) Non-Parabolic Semiconductors -- The ER in NIPI Structures of HD Non-Parabolic Semiconductors -- The ER in Accumulation Layers of HD Non-Parabolic Semiconductors -- Suggestion for Experimental Determinations of 2D and 3D ERs and few Related Applications -- Conclusion and Scope for Future. 
520 |a This book presents the Einstein Relation(ER) in two-dimensional (2-D) Heavily Doped(HD) Quantized Structures. The materials considered are quantized structures of HD non-linear optical, III-V, II-VI, Ge, Te, Platinum Antimonide, stressed materials, GaP, Gallium Antimonide, II-V, Bismuth Telluride together with various types of HD superlattices and their Quantized counterparts respectively. The ER in HD opto-electronic materials and their nanostructures is studied in the presence of strong light waves and intense electric fields on the basis of newly formulated electron dispersion laws that control the studies of such quantum effect devices. The suggestion for the experimental determination of HD 2D and 3D ERs and the importance of measurement of band gap in HD optoelectronic materials under intense built-in electric field in nanodevices and strong external photo excitation (for measuring photon induced physical properties) are also discussed in this context. The influence of crossed electric and quantizing magnetic fields on the ER of the different 2D HD quantized structures (quantum wells, inversion and accumulation layers, quantum well HD superlattices and nipi structures) under different physical conditions is discussed in detail. This monograph contains 100 open research problems which form the integral part of the text and are useful for both Ph.D aspirants and researchers in the fields of condensed matter physics, solid-state sciences, materials science, nano-science and technology and allied fields. 
650 0 |a Condensed matter. 
650 0 |a Microtechnology. 
650 0 |a Microelectromechanical systems. 
650 0 |a Optical materials. 
650 0 |a Semiconductors. 
650 0 |a Nanoscience. 
650 1 4 |a Condensed Matter Physics. 
650 2 4 |a Microsystems and MEMS. 
650 2 4 |a Optical Materials. 
650 2 4 |a Semiconductors. 
650 2 4 |a Nanophysics. 
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