Narrow Gap Semiconductors Based on Mercury-Cadmium Telluride
Page: 3-55 (53)
Author: Petro G. Sydorchuk and Halyna Khlyap
DOI: 10.2174/9781608051458113010004
PDF Price: $30
Abstract
The fundamentals of technologies applied for preparation of narrow-gap semiconductors Hg(Zn)CdTe are presented. The lecture discusses questions related to the technologies and device applications of active elements based on HgZnCdTe materials.
High-Effective Solar Cells, Thermodynamics and Physics of the Universe
Page: 56-96 (41)
Author: Viktor I. Laptev and Halyna Khlyap
DOI: 10.2174/9781608051458113010005
PDF Price: $30
Abstract
Conventional silicon-based solar cells production accounts principal characteristics of the semiconductor compounds presenting the main building part of the device. The first part of this e-lecture reports unique results on fabrication and quite uncommon performance of Si-based solar cells with novel contacts chemically deposited on traditionally prepared semiconductor part of the solar cell. How does the high-effective solar radiation conversion occur and what thermodynamics aspects are to be involved in theoretical explanation and further practical applications? The next part of the e-lecture proposes answers. The thermodynamics is an effective tool used in the physics of the Universe. Photonic condensate and the relic radiation are not only exotic objects for theoretical astrophysics but also present possible power tools for achieving high-effective energy conversion. This question is considered in further parts of the e-lecture.
Modeling of Thin Film-Based Semiconductor Active Elements
Page: 97-136 (40)
Author: Halyna Khlyap
DOI: 10.2174/9781608051458113010006
PDF Price: $30
Abstract
This lecture comprises basic fundamentals of the semiconductor devices’ modeling and illustrates the most interesting practical applications for novel spintronics structures.
Novel Spintronics Devices
Page: 137-187 (51)
Author: Halyna Khlyap
DOI: 10.2174/9781608051458113010007
PDF Price: $30
Abstract
This lecture describes important spintronics devices: surface-spintronics device, spintronic transistor, spintronic devices with constrained spintronic dopants and other structures.
Introduction
Dramatic developments in developing semiconductor device technology and nanotechnologies over the last decades has placed increasing demands on the fabrication and design of new electronic devices, It is now necessary to implement nanoscale gate geometries to achieve the highest performance standards in new devices. The need to understand and model the operation of nano-devices is, therefore, fundamental to future development and optimal design. From Semiclassical Semiconductors to Novel Spintronic Devices explains research related to new spintronic devices. This E-book: reports unique results on fabrication and the quite uncommon performance of Si-based solar cells with novel contacts chemically deposited on traditionally prepared semiconductor parts of the solar cell, details the mechanism behind efficient solar radiation conversion and the thermodynamics involved in theory and practice, discusses photonic condensate and relic radiation - exotic topics for theoretical astrophysics which also present possible power tools for achieving highly efficient energy conversion. This e-book is a useful review on the latest achievements in spintronic technology, characterization methods and nanoscaled active elements modeling for novel device design and applications The text within this e-book serves as a handy resource for graduate and PhD students as well as for professionals interested in the field of semiconductor device technology and modeling as well as spintronics.