DocumentCode
1311430
Title
Subnanometer Linewidth Uniformity in Silicon Nanophotonic Waveguide Devices Using CMOS Fabrication Technology
Author
Selvaraja, Shankar Kumar ; Bogaerts, Wim ; Dumon, Pieter ; Van Thourhout, Dries ; Baets, Roel
Author_Institution
Dept. of Inf. Technol., Ghent Univ., Ghent, Belgium
Volume
16
Issue
1
fYear
2010
Firstpage
316
Lastpage
324
Abstract
We report subnanometer linewidth uniformity in silicon nanophotonics devices fabricated using high-volume CMOS fabrication tools. We use wavelength-selective devices such as ring resonators, Mach-Zehnder interferometers, and arrayed waveguide gratings to assess the device nonuniformity within and between chips. The devices were fabricated using 193 or 248 nm optical lithography and dry etching in silicon-on-insulator wafer technology. Using 193 nm optical lithography, we have achieved a linewidth uniformity of 2 nm (after lithography) and 2.6 nm (after dry etch) over 200 mm wafer. Furthermore, with the developed fabrication process, using wavelength-selective devices, we have demonstrated a linewidth control better than 0.6 nm within chip and better than 2 nm chip-to-chip. The necessity for high-resolution optical lithography is demonstrated by comparing device nonuniformity between the 248 and 193 nm optical lithography processes.
Keywords
CMOS integrated circuits; Mach-Zehnder interferometers; arrayed waveguide gratings; integrated circuit technology; nanolithography; nanophotonics; photolithography; silicon-on-insulator; CMOS fabrication technology; Mach-Zehnder interferometers; arrayed waveguide gratings; dry etching; optical lithography; ring resonators; silicon nanophotonic waveguide devices; silicon-on-insulator; subnanometer linewidth uniformity; wavelength 193 nm; wavelength 248 nm; Arrayed waveguide grating (AWG); optical lithography; photonic wire; ring resonator; silicon photonics; silicon-on-insulator (SOI); uniformity;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2009.2026550
Filename
5325789
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