Low Threshold Organic Semiconductor Lasers

Hybrid Optoelectronics and Applications As Explosive Sensors

Low Threshold Organic Semiconductor Lasers
Yue Wang, Yue Wang
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Last edited by MARC Bot
October 2, 2024 | History

Low Threshold Organic Semiconductor Lasers

Hybrid Optoelectronics and Applications As Explosive Sensors

This thesis focuses on two areas - the development of miniature plastic lasers that can be powered by LEDs, and the application of these lasers as highly sensitive sensors for vapours of nitroaromatic explosives (e.g. TNT). Polymer lasers are extremely compact visible lasers; the research described in the thesis is groundbreaking, driving forward the technology and physical understanding to allow these lasers to be routinely pumped by a single high-power LED. A notable advance in the work is the demonstration of nanoimprinted polymer lasers, which exhibit the world's lowest pump threshold densities by two orders of magnitude. The thesis also advances the application of these compact, novel lasers as highly sensitive detectors of explosive vapours, demonstrating that rapid detection can be achieved when microporous polymers are used. This work also demonstrates a prototype CMOS-based microsystem sensor for explosive vapours, exploiting a new detection approach.

Publish Date
Publisher
Springer
Language
English
Pages
164

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Cover of: Low Threshold Organic Semiconductor Lasers
Cover of: Low Threshold Organic Semiconductor Lasers

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Book Details


Classifications

Library of Congress
TA1671-1707TA1501-18, TA1671-1707, TA1501-1820

The Physical Object

Number of pages
164
Weight
3.967

ID Numbers

Open Library
OL34377584M
ISBN 13
9783319012667

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October 2, 2024 Edited by MARC Bot import existing book
October 2, 2021 Created by ImportBot import new book