Publications

Found 471 results
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2014
S. Selvarajaa, Sleeckx, E., Schaekers, M., and Bogaerts, W., Deposited amorphous silicon-on-insulator technology for nano-photonic integrated circuits, Optics Communications, vol. 313, pp. 210-216, 2014.
S. K. Selvaraja et al., Highly uniform and low-loss passive silicon photonics devices using a 300mm CMOS platform, in Optical Fiber Communication Conference, 2014.
W. Xie, Fiers, M., Selvarajaa, S., Van Campenhout, J., Absil, P., and Van Thourhout, D., 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.
A. Khanna et al., Impact of ALD grown passivation layers on silicon nitride based integrated optics devices for very-near-infrared wavelengths, Optics Express, 2014.
A. Khanna et al., Impact of ALD grown passivation layers on silicon nitride based integrated optics devices for very-near-infrared wavelengths, Optics Express, 2014.
S. K. Selvaraja, Integrated Photonic Coupler, 14/580,029, 2014.
A. Z. Subramanian et al., Low-Loss Singlemode PECVD Silicon Nitride Photonic Wire Waveguides for 532-900 nm Wavelength Window Fabricated Within a CMOS Pilot Line, IEEE Photonics Journal, vol. 5, p. 2202809,2202809, 2014.
A. Z. Subramanian et al., Low-Loss Singlemode PECVD Silicon Nitride Photonic Wire Waveguides for 532-900 nm Wavelength Window Fabricated Within a CMOS Pilot Line, IEEE Photonics Journal, vol. 5, p. 2202809,2202809, 2014.
A. Z. Subramanian et al., Low-Loss Singlemode PECVD Silicon Nitride Photonic Wire Waveguides for 532-900 nm Wavelength Window Fabricated Within a CMOS Pilot Line, IEEE Photonics Journal, vol. 5, p. 2202809,2202809, 2014.
P. R. Prasad, Selvaraja, S. K., and Varma, M., Sensitivity analysis of tunable double microring resonator based intensity sensor, IEEE 2nd International Conference on Emerging Electronics (ICEE). IEEE, Bangalore, India, 2014.
D. - X. Xu et al., "Silicon Photonic Integration Platform-Have We Found the Sweet Spot?," Selected Topics in Quantum Electronic, IEEE Journal of Selected Topics in Quantum Electronics, vol. 20, no. 4, pp. 1-17., 2014.
D. - X. Xu et al., "Silicon Photonic Integration Platform-Have We Found the Sweet Spot?," Selected Topics in Quantum Electronic, IEEE Journal of Selected Topics in Quantum Electronics, vol. 20, no. 4, pp. 1-17., 2014.
S. Selvarajaa and Bogaerts, W., SOI for photonics in Handbook of silicon-on-insulator (SOI) technology, in Silicon-On-Insulator (SOI) Technology, Cambridge, UK.: Woodhead Publishing Limited, 2014.
J. Safioui et al., Supercontinuum generation in hydrogenated amorphous silicon waveguides at telecommunication wavelengths, Optics Express , vol. 22, no. 3, pp. 3089-3097, 2014.
J. Safioui et al., Supercontinuum generation in hydrogenated amorphous silicon waveguides at telecommunication wavelengths, Optics Express , vol. 22, no. 3, pp. 3089-3097, 2014.
U. Dave, Uvin, S., Kuyken, B., Selvarajaa, S., Leo, F., and Roelkens, G., Telecom to mid-infrared spanning supercontinuum generation in hydrogenated amorphous silicon waveguides using a Thulium doped fiber laser pump source, Optics Express , vol. 21 , no. (26), pp. 32032-32039, 2014.
2013
G. Roelkens et al., High index contrast gratings for silicon photonic integrated circuits, in Photonics West 2013, United States, 2013.
S. Uvin, Dave, U., Kuyken, B., Selvarajaa, S., Leo, F., and Roelkens, G., Mid-infrared to telecom-band stable supercontinuum generation in hydrogenated amorphous silicon waveguides, in Ieee Photonics Conference,United states, 2013.
S. Uvin, Dave, U., Kuyken, B., Selvarajaa, S., Leo, F., and Roelkens, G., Mid-infrared to telecom-band stable supercontinuum generation in hydrogenated amorphous silicon waveguides, in Ieee Photonics Conference and United States, 2013.
D. Korn et al., 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.
D. Korn et al., 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.
D. Korn et al., 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.
R. Baets et al., Spectroscopy-on-chip applications of silicon photonics, in Photonics West, United States, 2013.
R. Baets et al., Spectroscopy-on-chip applications of silicon photonics, in Photonics West, United States, 2013.
J. Safioui et al., Supercontinuum generation in hydrogenated amorphous silicon waveguide, Nonlinear Optics (NLO), United States, vol. 3, 2013.

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