Ultra-Broadband Optical Gain in III-Nitride Digital Alloys View Full Text


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Article Info

DATE

2018-12

AUTHORS

Wei Sun, Chee-Keong Tan, Jonathan J. Wierer, Nelson Tansu

ABSTRACT

A novel III-Nitride digital alloy (DA) with ultra-broadband optical gain is proposed. Numerical analysis shows a 50-period InN/GaN DA yields minibands that are densely quantized by numerous confined states. Interband transitions between the conduction and valence minibands create ultra-broadband optical gain spectra with bandwidths up to ~1 μm that can be tuned from the red to infrared. In addition, the ultra-broadband optical gain, bandwidth, and spectral coverage of the III-Nitride DA is very sensitive to layer thickness and other structural design parameters. This study shows the promising potential of the III-Nitride DAs with tunable ultra-broadband interband optical gain for use in semiconductor optical amplifiers and future III-Nitride photonic integration applications. More... »

PAGES

3109

Identifiers

URI

http://scigraph.springernature.com/pub.10.1038/s41598-018-21434-6

DOI

http://dx.doi.org/10.1038/s41598-018-21434-6

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1100951792

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/29449620


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56 schema:description A novel III-Nitride digital alloy (DA) with ultra-broadband optical gain is proposed. Numerical analysis shows a 50-period InN/GaN DA yields minibands that are densely quantized by numerous confined states. Interband transitions between the conduction and valence minibands create ultra-broadband optical gain spectra with bandwidths up to ~1 μm that can be tuned from the red to infrared. In addition, the ultra-broadband optical gain, bandwidth, and spectral coverage of the III-Nitride DA is very sensitive to layer thickness and other structural design parameters. This study shows the promising potential of the III-Nitride DAs with tunable ultra-broadband interband optical gain for use in semiconductor optical amplifiers and future III-Nitride photonic integration applications.
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