DocumentCode
1050641
Title
Freestanding GaN Resonant Gratings at Telecommunication Range
Author
Wang, Yongjin ; Hu, Fangren ; Wakui, Masashi ; Hane, Kazuhiro
Author_Institution
Dept. of Nanomech., Tohoku Univ., Sendai, Japan
Volume
21
Issue
17
fYear
2009
Firstpage
1184
Lastpage
1186
Abstract
We theoretically and experimentally demonstrate a freestanding gallium nitride (GaN) resonant grating at telecommunication range. The optical responses of the freestanding GaN resonant gratings are analyzed by the rigorous coupled-wave analysis method. The freestanding GaN resonant gratings are validated on 850-nm freestanding membrane by a combination of electron beam lithography, fast atom beam, etching, and deep reactive ion etching. The polarization properties of such freestanding GaN resonant gratings are demonstrated in reflectance measurements, and the experimental results correspond well to the theoretical model. The strong resonant peaks show a clear dependence on the duty ratio under transverse magnetic polarization, and a promising resonant peak of the fabricated freestanding GaN resonant grating, in which the grating period P is 1500 nm, the grating height h is 230 nm, and the grating width is 280 nm, is observed at 1516.4 nm with a full-width at half-maximum of 4 nm.
Keywords
III-V semiconductors; diffraction gratings; electron beam lithography; gallium compounds; light polarisation; optical communication equipment; optical fabrication; optical filters; sputter etching; GaN; coupled wave analysis method; deep reactive ion etching; electron beam lithography; fast atom beam etching; freestanding membrane; freestanding resonant gratings; polarization property; size 1500 nm; size 230 nm; size 280 nm; telecommunication range; wavelength 1516.4 nm; wavelength 850 nm; Electron beam lithography; etching; gallium compounds; resonator filters;
fLanguage
English
Journal_Title
Photonics Technology Letters, IEEE
Publisher
ieee
ISSN
1041-1135
Type
jour
DOI
10.1109/LPT.2009.2024221
Filename
5061530
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