Shane T. Todd, Ph.D.

Affiliations: 
2010 Electrical & Computer Engineering University of California, Santa Barbara, Santa Barbara, CA, United States 
Area:
Electronics & Photonics
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"Shane Todd"

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John Edward Bowers grad student 2010 UC Santa Barbara
 (High aspect ratio transmission line circuits micromachined in silicon.)
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Publications

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Arulkumaran S, Ng GI, Vicknesh S, et al. (2012) Direct current and microwave characteristics of sub-micron AlGaN/GaN high-electron-mobility transistors on 8-inch Si(111) substrate Japanese Journal of Applied Physics. 51
Tripathy S, Lin VKX, Dolmanan SB, et al. (2012) AlGaN/GaN two-dimensional-electron gas heterostructures on 200 mm diameter Si(111) Applied Physics Letters. 101
Liang D, Fiorentino M, Todd ST, et al. (2011) Fabrication of silicon-on-diamond substrate and low-loss optical waveguides Ieee Photonics Technology Letters. 23: 657-659
Liang D, Fiorentino M, Srinivasan S, et al. (2011) Optimization of Hybrid Silicon Microring Lasers Ieee Photonics Journal. 3: 580-587
Li Y, Wang L, Arulkumaran S, et al. (2011) A compact model of AlGaN/GaN on silicon Schottky diode and its application 2011 International Symposium On Integrated Circuits, Isic 2011. 321-324
Todd ST, MacDonald NC, Bowers JE. (2011) The mesa merging oxidation method for creating low-loss dielectrics and transmission lines on low-resistivity silicon Journal of Micromechanics and Microengineering. 21
Liang D, Fiorentino M, Beausoleil RG, et al. (2011) Low-loss silicon-on-diamond optical waveguides Optics Infobase Conference Papers
Todd ST, Huang XT, Bowers JE, et al. (2010) Fabrication, modeling, and characterization of high-aspect-ratio coplanar waveguide Ieee Transactions On Microwave Theory and Techniques. 58: 3790-3800
Todd ST, Bowers JE, MacDonald NC. (2010) Micromachined high aspect ratio coplanar waveguide with high impedance and low loss on low resistivity silicon Ieee Mtt-S International Microwave Symposium Digest. 876-879
Todd ST, Huang XT, Bowers JE, et al. (2010) A novel micromachining process using DRIE, thermal oxidation, electroplating, and planarization to create high aspect ratio coplanar waveguides Journal of Microelectromechanical Systems. 19: 55-63
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