Optical Characterization of Microstructures and Optoelectronic Devices Based on Wide Band Gap Semiconductors

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Geliefert zwischen Fr., 20.02.2026 und Mo., 23.02.2026

Details

This book focuses on the optical characterization of wide band gap semiconductor micro-nano structures and advanced optoelectronic devices including GaN-based laser diodes, GaN-based micro-LEDs, ZnO-based micro-lasers, Ga2O3-based deep UV photodetectors, etc., written by leading scholars in the field from the perspective of applied research and development of advanced optoelectronic devices.

This book consists of 12 chapters, mainly presenting the authors' own new findings, new theoretical models and experimental results, which can benefit researchers, engineers and postgraduate students in the field of semiconductor optoelectronics.


Focuses on several important frontier topics of wide band gap semiconductors Written by scholars who are being actively working in wide band gap semiconductors and advanced optoelectronic devices Introduces the optical characterization of wide band gap semiconductor micro-nano structures and advanced optoelectronic devices

Autorentext

Prof. Shijie Xu is currently a distinguished professor in Department of Optical Science and Engineering, Fudan University. Before he joined Fudan University, he worked as a professor with tenure in Department of Physics, The University of Hong Kong. Prof. Xu is interested in luminescence and related phenomena, especially effects of carrier localization and many-body interactions in internal luminescence and relevant optoelectronic processes in wide band gap semiconducts and other solids. He has authored over 170 scientific articles and letters with significant impact in the fields.


Inhalt

Wide band gap semiconductor laser technology and characterization.- Growth and characterization of GaN-based lasers on silicon substrates.- Efficiency characterization of GaN-based LEDs.- Preparation and optoelectronic properties of GaN-based Micro-LEDs.- Key factors restricting the external quantum efficiency of GaN-based micro-LEDsand solutions.- Growth and optical characterization of non-polar and semi-polar GaN-based LEDs.- Construction and characterization of ZnO micro-nano lasers.- Ga2O3 solar blind deep ultraviolet detectors.- Optoelectronic properties and characterization of gallium-doped ZnO.- Optoelectronic process characterization of localized carriers in semiconductors and photovoltaic devices.- Photoluminescence properties and characterization of InGaN/GaN nanowire quantum dots.- Characterization of nonlinear optical properties of ZnO single crystals and micro-nano structures.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09789819519279
    • Lesemotiv Verstehen
    • Genre Thermal Engineering
    • Editor Shijie Xu
    • Anzahl Seiten 373
    • Herausgeber Springer-Verlag GmbH
    • Größe H235mm x B155mm
    • Jahr 2026
    • EAN 9789819519279
    • Format Fester Einband
    • ISBN 978-981-9519-27-9
    • Titel Optical Characterization of Microstructures and Optoelectronic Devices Based on Wide Band Gap Semiconductors
    • Untertitel Wide Bandgap Semiconductors
    • Sprache Englisch

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