Publications
“Silicon Photonics, a key technology enabler for short reach optical interconnects”, in MRS Spring Meeting, California, United States, 2012.
, “Silicon Photonics, a key technology enabler for short reach optical interconnects”, in MRS Spring Meeting, California, United States, 2012.
, “Silicon-on-insulator polarization rotator based on a symmetry breaking silicon overlay”, IEEE Photonics Technology Letters, vol. 24, pp. 482-484, 2012.
, “Silicon-on-insulator polarization rotator based on a symmetry breaking silicon overlay”, IEEE Photonics Technology Letters, vol. 24, pp. 482-484, 2012.
, “Silicon-on-insulator polarization rotator based on a symmetry breaking silicon overlay”, IEEE Photonics Technology Letters, vol. 24, pp. 482-484, 2012.
, “Silicon-on-Insulator polarization rotator based on a symmetry breaking silicon overlay”, r publication in Photonics Technology Letters, 24(6), p.482-484, 2012.
, “Silicon-on-Insulator polarization rotator based on a symmetry breaking silicon overlay”, r publication in Photonics Technology Letters, 24(6), p.482-484, 2012.
, “Silicon-on-Insulator polarization rotator based on a symmetry breaking silicon overlay”, r publication in Photonics Technology Letters, 24(6), p.482-484, 2012.
, “High index contrast gratings for silicon photonic integrated circuits”, in Photonics West 2013, United States, 2013.
, “High index contrast gratings for silicon photonic integrated circuits”, in Photonics West 2013, United States, 2013.
, “High index contrast gratings for silicon photonic integrated circuits”, in Photonics West 2013, United States, 2013.
, “Silicon-organic hybrid (SOH) IQ modulator using the linear elctro-optic effect for transmitting 16QAM at 112 Gbit/s”, Optics Express, vol. 21, pp. 13219-13227, 2013.
, “Silicon-organic hybrid (SOH) IQ modulator using the linear elctro-optic effect for transmitting 16QAM at 112 Gbit/s”, Optics Express, vol. 21, pp. 13219-13227, 2013.
, “Supercontinuum generation in hydrogenated amorphous silicon waveguide”, Nonlinear Optics (NLO), United States, vol. 3, 2013.
, “193nm immersion lithography for high-performance silicon photonic circuits”, Spie Advanced Lithography, vol. 9052. SPIE , United states, pp. 9052-14, 2014.
, “193nm immersion lithography for high-performance silicon photonic circuits”, Spie Advanced Lithography, vol. 9052. SPIE , United states, pp. 9052-14, 2014.
, “Advances in silicon photonics WDM devices”, in Proc. SPIE 9010 , Next-Generation Optical Networks for Data Centers and Short-Reach Links, 2014.
, “Advances in silicon photonics WDM devices”, in Proc. SPIE 9010 , Next-Generation Optical Networks for Data Centers and Short-Reach Links, 2014.
, “Advances in silicon photonics WDM devices”, in Proc. SPIE 9010 , Next-Generation Optical Networks for Data Centers and Short-Reach Links, 2014.
, “Highly uniform and low-loss passive silicon photonics devices using a 300mm CMOS platform”, in Optical Fiber Communication Conference, 2014.
, “Highly uniform and low-loss passive silicon photonics devices using a 300mm CMOS platform”, in Optical Fiber Communication Conference, 2014.
, “High-Performance Photonic Crystal Nanocavities on 300 mm SOI Substrate Fabricated With 193nm Immersion Lithography,”, Journal of Lightwave Technology, vol. 32, no. 18, pp. 1457 - 1462 , 2014.
, “High-Performance Photonic Crystal Nanocavities on 300 mm SOI Substrate Fabricated With 193nm Immersion Lithography,”, Journal of Lightwave Technology, vol. 32, no. 18, pp. 1457 - 1462 , 2014.
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