Jones, Jr. et al., Electrical, Thermoelectric, And Optical Properties Of Strongly Degenerate Polycrystalline Silicon Films, J. Appl. Phys., vol. 56, No. 6, Sep. 15, 1984, pp. 1701-1706. |
Seager et al., Dangling Bonds And The Urbach Tail In Silicon.sup.a), J. Appl. Phys., vol. 58, No. 7, Oct. 1, 1985, pp. 2704-2708. |
Jackson et al., Direct Measurement Of Gap-State Absorption In Hydrogenated Amorphous Silicon By Photothermal Deflection Spectroscopy, Physical Review B, vol. 25, No. 8, Apr. 15, 1982, pp. 5559-5562. |
Jackson et al., Density Of Gap States Of Silicon Grain Boundaries Determined By Optical Absorption, Appl. Phys. Lett., vol. 43, No. 2, Jul. 15, 1983, pp. 195-197. |
Emmons et al., Buried-Oxide Silicon-on-Insulator Structures I: Optical Waveguide Characteristics, IEEE Journal of Quantum Electronics, vol. 28, No. 1, Jan. 1992, pp. 157-163. |
Weiss et al., The Transmission Properties Of Optical Waveguides In SIMOX Structures, Optical and Quantum Electronics, vol. 23, 1991, pp. 1061-1065. |
Soref et al., All-Silicon Active and Passive Guided-Wave Components For .lambda.1=1.3 and 1.6.mu.m, IEEE Journal of Quantum Electronics, vol. QE-22, No. 6, Jun. 1986, pp. 873-879. |
Asakawa et al., Three-Dimensional Optical Interconnects By Stacked Arrow Waveguides, Electronics Letters, vol. 29, Jun. 29, 1993, pp. 1485-1486. |
Soref et al., Vertically Integrated Silicon-on-Insulator Waveguides, IEEE Photonics Technology Letters, vol. 3, No. 1, Jan. 1991, pp. 22-24. |
Rickman et al., Low-Loss Planar Optical Waveguides Fabricated In SIMOX Material, IEEE Photonics Technology Letters, vol. 4, No. 6, Jun. 1992, pp. 633-635. |
Zhao et al., Silicon On Insulator Mach-Zehnder Waveguide Interferometers Operating At 1.3 .mu.m, Appl. Phys. Lett., vol. 67, No. 17, Oct. 23, 1995, pp. 2448-2449. |
Adar et al., Measurement Of Very Low-Loss Silica On Silicon Waveguides With A Ring Resonator, Appl. Phys. Lett., vol. 58, No. 5, Feb. 4, 1991, pp. 444-445. |
Weiss et al., Optical Waveguides In SIMOX Structures, IEEE Photonics Technology Letters, Vol. 3, No. 1, Jan. 1991, pp. 19-21. |
Hunsperger, Springer Series in Optical Sciences, Intergrated Optics: Theory and Technology, Second Edition, pp. 1-44. |
Wu et al., Photodector Arrays In Laser-Recrystallized Silicon Integrated With An Optical Waveguide, Mat. Res. Soc. Symp. Proc., vol. 35, 1985 Materials Research Society, pp. 675-680. |
Hilleringmann et al., Optoelectronic System Integration On Silicon: Waveguides, Photodectors, And VLSI CMOS Circuits On One Chip, IEEE Transactions On Electron Devices, vol. 42, No. 5, May 1995, pp. 841-846. |
Kurdi et al., Optical Waveguides In Oxygen-Implanted Buried-Oxide Silicon-On-Insulator Structures, Optics Letters, vol. 13, No. 2, Feb. 1988, pp. 175-177. |
Kokubun et al., Low-Loss Antiresonant Reflecting Optical Waveguide On Si Substrate In Visible-Wavelength Region, Electronics Letters, vol. 22, Jun. 30, 1986, pp. 892-893. |
Schmidtchen et al., Low Loss Singlemode Optical Waveguides With Large Cross-Section In Silicon-On-Insulator, Electronics Letters, vol. 27, Jun. 12, 1991, pp. 1486-1487. |
Lim, Simulation Of Single Mode Si Waveguides And Electro-Optic Coupling Modulators, Bachelor of Science in Electrical Science & Engineering at the Massachusetts Institute of Technology, May 1994, pp. 5-90. |
Foresi et al., Losses In Polycrystalline Silicon Waveguides, Appl. Phys. Lett., vol. 68, No. 15, Apr. 8, 1996, pp. 2052-2054. |
P.K. Tien, Light Waves In Thin Films And Intergrated Optics, Applied Optics, vol. 10, No. 11, Nov. 1971, pp. 2395-2413. |