Integrating efficient W-superlattices and cavities into mid-wave LEDs and VCSELs
Abstract
Details
- Title: Subtitle
- Integrating efficient W-superlattices and cavities into mid-wave LEDs and VCSELs
- Creators
- David Alexander Montealegre
- Contributors
- John P. Prineas (Advisor)Fatima Toor (Committee Member)Craig Pryor (Committee Member)Markus Wohlgenannt (Committee Member)Thomas Folland (Committee Member)
- Resource Type
- Dissertation
- Degree Awarded
- Doctor of Philosophy (PhD), University of Iowa
- Degree in
- Physics
- Date degree season
- Autumn 2022
- Publisher
- University of Iowa
- DOI
- 10.25820/etd.007526
- Number of pages
- xxi, 113 pages
- Copyright
- Copyright 2022 David Alexander Montealegre
- Language
- English
- Date submitted
- 09/16/2022
- Description illustrations
- Illustrations, tables, graphs, charts
- Description bibliographic
- Includes bibliographical references (pages 101-113).
- Public Abstract (ETD)
In this thesis we will present original work on mid-infrared light-emitting diodes (LEDs) that led to enhanced high-power performance, the design and demonstration of a two-color midinfrared LED, and the creation of a process for making vertical cavity surface emitting lasers (VCSEL).
The LED high-power performance was increased over 5x through multiple methods. The high-power LED design was then used in a two-color LED with independent color control. Through careful simulation and testing, conditions were successfully mapped out for true two-color independent control. Some LEDs showed the narrowed linewidth due to amplified spontaneous emission. This motivated creating an actual vertical emitting laser. A design, growth and fab process was successfully developed to make the laser. Key elements of the VCSEL were successfully achieved, but further work remains to achieve high efficiency lasing.
- Academic Unit
- Physics and Astronomy
- Record Identifier
- 9984647258302771