Dielectric Coating Thermal Stabilization During GaAs-Based Laser Fabrication for Improved Device Yield

被引:0
作者
Michael K. Connors
Jamal E. Millsapp
George W. Turner
机构
[1] Massachusetts Institute of Technology,Lincoln Laboratory
[2] Toho Technology Inc.,undefined
来源
Journal of Electronic Materials | 2016年 / 45卷
关键词
PECVD; GaAs; film stress; metal blister; blister; adhesion;
D O I
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中图分类号
学科分类号
摘要
The quality and yield of GaAs-based ridge waveguide devices fabricated at MIT Lincoln Laboratory were negatively impacted by the random lot-to-lot appearance of blisters in the front-side contact metal. The blisters signaled compromised adhesion between the front-side contact metal, underlying SiO2 dielectric coating, and semiconductor surface. A thermal-anneal procedure developed for the fabrication of GaAs slab coupled optical waveguide (SCOW) ridge waveguide devices stabilizes the SiO2 dielectric coating by means of outgassing and stress reduction. This process eliminates a primary source of adhesion loss, as well as blister generation, and thereby significantly improves device yield. Stoney’s equation was used to analyze stress-induced bow in device wafers fabricated using this stabilization procedure. This analysis suggests that changes in wafer bow contribute to the incidence of metal blisters in SCOW devices.
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页码:2750 / 2756
页数:6
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