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Titlebook: Quantum Dot Molecules; Jiang Wu,Zhiming M. Wang Book 2014 Springer Science+Business Media New York 2014 Couple quantum Dot Molecules.Dropl

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发表于 2025-3-21 18:04:10 | 显示全部楼层 |阅读模式
书目名称Quantum Dot Molecules
编辑Jiang Wu,Zhiming M. Wang
视频video
概述Presents the first comprehensive reference focused solely on quantum dot molecules.Provides state-of-the-art coverage of novel technologies and techniques.Connects fundamental physical properties with
丛书名称Lecture Notes in Nanoscale Science and Technology
图书封面Titlebook: Quantum Dot Molecules;  Jiang Wu,Zhiming M. Wang Book 2014 Springer Science+Business Media New York 2014 Couple quantum Dot Molecules.Dropl
描述.A quantum dot molecule (QDM) is composed of two or more closely spaced quantum dots or “artificial atoms.” In recent years, QDMs have received much attention as an emerging new artificial quantum system. The interesting and unique coupling and energy transfer processes between the “artificial atoms” could substantially extend the range of possible applications of quantum nanostructures. This book reviews recent advances in the exciting and rapidly growing field of QDMs via contributions from some of the most prominent researchers in this scientific community. The book explores many interesting topics such as the epitaxial growth of QDMs, spectroscopic characterization, and QDM transistors, and bridges between the fundamental physics of novel materials and device applications for future information technology. Both theoretical and experimental approaches are considered. .Quantum Dot Molecules. can be recommended for electrical engineering and materials science department courses on the science and design of advanced and future electronic and optoelectronic devices..
出版日期Book 2014
关键词Couple quantum Dot Molecules; Droplet Epitaxy; InGaAs Quantum Dot Molecules, Luminescence from; InGaN/G
版次1
doihttps://doi.org/10.1007/978-1-4614-8130-0
isbn_softcover978-1-4939-4766-9
isbn_ebook978-1-4614-8130-0Series ISSN 2195-2159 Series E-ISSN 2195-2167
issn_series 2195-2159
copyrightSpringer Science+Business Media New York 2014
The information of publication is updating

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Analysis of Reduced Built-In Polarization Fields and Electronic Structure of InGaN/GaN Quantum Dot onic devices. However, the emission efficiency of .-plane InGaN/GaN quantum wells (QWs) drops significantly when going to longer wavelengths due to the strong electrostatic built-in fields in such heterostructures. We present a surface integral method to show and explain why the polarization potenti
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