Heteroepitaxy, an Amazing Contribution of Crystal Growth to the World of Optics and Electronics

Advances in Electronics and Optics are often preceded by discoveries in Crystal Growth theory and practice. This article represents in retrospect some of the most significant contributions of heteroepitaxy in these and some other areas—the strong impact of the three modes of heteroepitaxy on microel...

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Main Author: Vladimir L. Tassev
Format: Article
Language:English
Published: MDPI AG 2017-06-01
Series:Crystals
Subjects:
Online Access:http://www.mdpi.com/2073-4352/7/6/178
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spelling doaj-9a9cf32c75ba4f3e8d5d2a350303a0182020-11-24T22:38:01ZengMDPI AGCrystals2073-43522017-06-017617810.3390/cryst7060178cryst7060178Heteroepitaxy, an Amazing Contribution of Crystal Growth to the World of Optics and ElectronicsVladimir L. Tassev0Air Force Research Laboratory, Sensors Directorate, WPAFB, Dayton, OH 45433, USAAdvances in Electronics and Optics are often preceded by discoveries in Crystal Growth theory and practice. This article represents in retrospect some of the most significant contributions of heteroepitaxy in these and some other areas—the strong impact of the three modes of heteroepitaxy on microelectronics and quantum optics, the big “push” of PENDEO epitaxy in development of Light Emitting Diodes, etc. A large part of the text is dedicated to heteroepitaxy of nonlinear optical materials grown on orientation-patterned templates and used in the development of new quasi-phase-matching frequency conversion laser sources. By achieving new frequency ranges such sources will result in a wide variety of applications in areas such as defense, security, industry, medicine, and science. Interesting facts from the scientific life of major contributors in the field are mixed in the text with fine details from growth experiments, chemical equations, results from material characterizations and some optical and crystallographic considerations—all these presented in a popular way but without neglecting their scientific importance and depth. The truth is that often heteroepitaxy is not just the better but the only available option. The truth is that delays in device development are usually due to gaps in materials research. In all this, miscommunication between different scientific communities always costs vain efforts, uncertainty, and years of going in a wrong scientific direction. With this article we aim to stimulate a constructive dialog that could lead to solutions of important interdisciplinary scientific and technical issues.http://www.mdpi.com/2073-4352/7/6/178heteroepitaxyhydride vapor phase epitaxyselective growthIII-Nitridesnonlinear optical materialsorientation-patterned templatesfrequency conversionquasi-phase-matching
collection DOAJ
language English
format Article
sources DOAJ
author Vladimir L. Tassev
spellingShingle Vladimir L. Tassev
Heteroepitaxy, an Amazing Contribution of Crystal Growth to the World of Optics and Electronics
Crystals
heteroepitaxy
hydride vapor phase epitaxy
selective growth
III-Nitrides
nonlinear optical materials
orientation-patterned templates
frequency conversion
quasi-phase-matching
author_facet Vladimir L. Tassev
author_sort Vladimir L. Tassev
title Heteroepitaxy, an Amazing Contribution of Crystal Growth to the World of Optics and Electronics
title_short Heteroepitaxy, an Amazing Contribution of Crystal Growth to the World of Optics and Electronics
title_full Heteroepitaxy, an Amazing Contribution of Crystal Growth to the World of Optics and Electronics
title_fullStr Heteroepitaxy, an Amazing Contribution of Crystal Growth to the World of Optics and Electronics
title_full_unstemmed Heteroepitaxy, an Amazing Contribution of Crystal Growth to the World of Optics and Electronics
title_sort heteroepitaxy, an amazing contribution of crystal growth to the world of optics and electronics
publisher MDPI AG
series Crystals
issn 2073-4352
publishDate 2017-06-01
description Advances in Electronics and Optics are often preceded by discoveries in Crystal Growth theory and practice. This article represents in retrospect some of the most significant contributions of heteroepitaxy in these and some other areas—the strong impact of the three modes of heteroepitaxy on microelectronics and quantum optics, the big “push” of PENDEO epitaxy in development of Light Emitting Diodes, etc. A large part of the text is dedicated to heteroepitaxy of nonlinear optical materials grown on orientation-patterned templates and used in the development of new quasi-phase-matching frequency conversion laser sources. By achieving new frequency ranges such sources will result in a wide variety of applications in areas such as defense, security, industry, medicine, and science. Interesting facts from the scientific life of major contributors in the field are mixed in the text with fine details from growth experiments, chemical equations, results from material characterizations and some optical and crystallographic considerations—all these presented in a popular way but without neglecting their scientific importance and depth. The truth is that often heteroepitaxy is not just the better but the only available option. The truth is that delays in device development are usually due to gaps in materials research. In all this, miscommunication between different scientific communities always costs vain efforts, uncertainty, and years of going in a wrong scientific direction. With this article we aim to stimulate a constructive dialog that could lead to solutions of important interdisciplinary scientific and technical issues.
topic heteroepitaxy
hydride vapor phase epitaxy
selective growth
III-Nitrides
nonlinear optical materials
orientation-patterned templates
frequency conversion
quasi-phase-matching
url http://www.mdpi.com/2073-4352/7/6/178
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