The Physics of Semiconductors : With Applications to Optoelectronic Devices

The physics of semiconductors : with applications to optoelectronic devices  eBooks & eLearning

Posted by insetes at April 2, 2019
The physics of semiconductors : with applications to optoelectronic devices

The physics of semiconductors : with applications to optoelectronic devices By Kevin F Brennan
1999 | 776 Pages | ISBN: 0521593506 | PDF | 54 MB

Semiconductors for Optoelectronics: Basics and Applications  eBooks & eLearning

Posted by hill0 at Oct. 11, 2021
Semiconductors for Optoelectronics: Basics and Applications

Semiconductors for Optoelectronics: Basics and Applications (Graduate Texts in Physics)
English | 2021 | ISBN: 3319449346 | 304 Pages | PDF EPUB | 43 MB

Essentials of Semiconductor Device Physics  eBooks & eLearning

Posted by yoyoloit at Dec. 19, 2023
Essentials of Semiconductor Device Physics

Essentials of Semiconductor Device Physics
by Emiliano R. Martins

English | 2022 | ISBN: 111988411X | 237 pages | True PDF | 14.47 MB

Organic Semiconductors for Optoelectronics  eBooks & eLearning

Posted by yoyoloit at Aug. 6, 2021
Organic Semiconductors for Optoelectronics

Organic Semiconductors for Optoelectronics
by Naito, Hiroyoshi;

English | 2021 | ISBN: 1119146100 | 387 pages | True PDF | 12.61 MB

Compound Semiconductors: Physics, Technology, and Device Concepts  eBooks & eLearning

Posted by sasha82 at Feb. 4, 2018
Compound Semiconductors: Physics, Technology, and Device Concepts

Compound Semiconductors: Physics, Technology, and Device Concepts by Ferdinand Scholz
October 6, 2017 | ISBN: 9814774073 | English | 306 pages | PDF | 25 MB

Optoelectronic Integration: Physics, Technology and Applications  eBooks & eLearning

Posted by AvaxGenius at June 28, 2024
Optoelectronic Integration: Physics, Technology and Applications

Optoelectronic Integration: Physics, Technology and Applications by O. Wada
English | PDF | 1994 | 646 Pages | ISBN : 0792394534 | 47.9 MB

As we approach the end of the present century, the elementary particles of light (photons) are seen to be competing increasingly with the elementary particles of charge (electrons/holes) in the task of transmitting and processing the insatiable amounts of infonnation needed by society. The massive enhancements in electronic signal processing that have taken place since the discovery of the transistor, elegantly demonstrate how we have learned to make use of the strong interactions that exist between assemblages of electrons and holes, disposed in suitably designed geometries, and replicated on an increasingly fine scale. On the other hand, photons interact extremely weakly amongst themselves and all-photonic active circuit elements, where photons control photons, are presently very difficult to realise, particularly in small volumes. Fortunately rapid developments in the design and understanding of semiconductor injection lasers coupled with newly recognized quantum phenomena, that arise when device dimensions become comparable with electronic wavelengths, have clearly demonstrated how efficient and fast the interaction between electrons and photons can be. This latter situation has therefore provided a strong incentive to devise and study monolithic integrated circuits which involve both electrons and photons in their operation. As chapter I notes, it is barely fifteen years ago since the first demonstration of simple optoelectronic integrated circuits were realised using m-V compound semiconductors; these combined either a laser/driver or photodetector/preamplifier combination.

Excitons in Low-Dimensional Semiconductors: Theory Numerical Methods Applications  eBooks & eLearning

Posted by AvaxGenius at March 24, 2024
Excitons in Low-Dimensional Semiconductors: Theory Numerical Methods Applications

Excitons in Low-Dimensional Semiconductors: Theory Numerical Methods Applications by Stephan Glutsch
English | PDF | 2004 | 302 Pages | ISBN : 3540202404 | 24.8 MB

Low-dimensional semiconductors have become a vital part of today's semiconductor physics, and excitons in these systems are ideal objects that bring textbook quantum mechanics to life. Furthermore, their theoretical understanding is important for experiments and optoelectronic devices. The author develops the effective-mass theory of excitons in low-dimensional semiconductors and describes numerical methods for calculating the optical absorption including Coulomb interaction, geometry, and external fields. The theory is applied to Fano resonances in low-dimensional semiconductors and the Zener breakdown in superlattices. Comparing theoretical results with experiments, the book is essentially self-contained; it is a hands-on approach with detailed derivations, worked examples, illustrative figures, and computer programs. The book is clearly structured and will be valuable as an advanced-level self-study or course book for graduate students, lecturers, and researchers.

2D Materials: Properties and Devices  eBooks & eLearning

Posted by Underaglassmoon at Aug. 14, 2017
2D Materials: Properties and Devices

2D Materials: Properties and Devices
Cambridge | English | July 2017 | ISBN-10: 1107163714 | 523 pages | PDF | 66.73 mb

by Phaedon Avouris (Editor), Tony F. Heinz (Editor), Tony Low (Editor)

Quantum Effects, Heavy Doping, And The Effective Mass  eBooks & eLearning

Posted by Underaglassmoon at Jan. 16, 2017
Quantum Effects, Heavy Doping, And The Effective Mass

Quantum Effects, Heavy Doping, And The Effective Mass
World Scientific | English | February 2017 | ISBN-10: 9813146516 | 404 pages | PDF | 10.38 mb

By (author): Kamakhya Prasad Ghatak (University of Engineering and Management, India)

Quaternary Alloys Based on III-V Semiconductors  eBooks & eLearning

Posted by readerXXI at June 2, 2018
Quaternary Alloys Based on III-V Semiconductors

Quaternary Alloys Based on III-V Semiconductors
by Vasyl Tomashyk
English | 2018 | ISBN: 1498778364 | 350 Pages | PDF | 31 MB