InGaN-Based Multi-Quantum-Well-Structure Laser Diodes

Shuji Nakamura, Masayuki Senoh, Shin-ichi Nagahama, Naruhito Iwasa, Takao Yamada, Toshio Matsushita, Hiroyuki Kiyoku Hiroyuki Kiyoku, Yasunobu Sugimoto Yasunobu Sugimoto

1996Published
2.3KCitations
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journal articleType

Abstract

InGaN multi-quantum-well (MQW) structure laser diodes (LDs) fabricated from III-V nitride materials were grown by metalorganic chemical vapor deposition on sapphire substrates. The mirror facet for a laser cavity was formed by etching of III-V nitride films without cleaving. As an active layer, the InGaN MQW structure was used. The InGaN MQW LDs produced 215 mW at a forward current of 2.3 A, with a sharp peak of light output at 417 nm that had a full width at half-maximum of 1.6 nm under the pulsed current injection at room temperature. The laser threshold current density was 4 kA/cm 2 . The emission wavelength is the shortest one ever generated by a semiconductor laser diode.

Journal: Japanese Journal of Applied Physics

Publisher: IOP Publishing

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