Effect Of Static Electric Fields On The Electronic And Optical Properties Of Layered Semiconductor Nanostructures

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Effect of Static Electric Fields on The Electronic And Optical Properties of Layered Semiconductor Nanostructures

Effect of Static Electric Fields on The Electronic And Optical Properties of Layered Semiconductor Nanostructures
Author :
Publisher : Bentham Science Publishers
Total Pages : 252
Release :
ISBN-10 : 9781681080802
ISBN-13 : 168108080X
Rating : 4/5 (80X Downloads)

Book Synopsis Effect of Static Electric Fields on The Electronic And Optical Properties of Layered Semiconductor Nanostructures by : Volodya A. Harutyunyan

Download or read book Effect of Static Electric Fields on The Electronic And Optical Properties of Layered Semiconductor Nanostructures written by Volodya A. Harutyunyan and published by Bentham Science Publishers. This book was released on 2015-11-04 with total page 252 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume investigates the theory of the effect of static electric fields on one-electron states in. nanocylindrical and nanospherical heterolayers and quantized semiconductor films. Homogeneous external electrostatic field for all these structures has been considered as a "universal" modulating factor. For structures with radial symmetry, a study on the influence of radial static field and the electric field of a charged ring on one-electron states is presented. Chapters focusing on homogeneous field effect on low-dimensional excitonic states in the quantized films and quantum wires - in both wide bandgap and narrowband semiconductors - are also included. Other contents include calculations weak, moderate and strong electric fields, quantum-mechanical approximation and perturbation theory, the quasi-classical approximation (WKB method). Readers will benefit from the varied methodological to the subject which gives them a concrete analytical framework to solve problems related to nanoscale semiconductor design. The reference should prove to be useful to academics and professionals working in semiconductor nanoelectronics research and development.


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