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84884191011
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plenary talk CLEO, United States
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Y. Vlasov, "Silicon integrated nanophotonics: road from scientific explorations to practical applications," plenary talk CLEO, United States, 2012.
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(2012)
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Vlasov, Y.1
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2
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77955861886
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Multiplexed antibody detection with an array of silicon-on-insulator microring resonators
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K. De Vos, J. Molera, T. Claes, Y. De Koninck, S. Popelka, E. Schacht, R. Baets, and P. Bienstman, "Multiplexed antibody detection with an array of silicon-on-insulator microring resonators," IEEE Photonics Journal 1(4), 225-235 (2009).
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IEEE Photonics Journal
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De Vos, K.1
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Baets, R.7
Bienstman, P.8
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3
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84878843355
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Homodyne laser Doppler vibrometer on silicon-on-insulator with integrated 90 degree optical hybrids
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Y. Li and R. Baets, "Homodyne laser Doppler vibrometer on silicon-on-insulator with integrated 90 degree optical hybrids," Opt. Express 21(11), 13342-13350 (2013).
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Opt. Express
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Li, Y.1
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4
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Infrared methods for gas detection
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(Springer-Verlag, 2006)
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J. G. Crowder, S. D. Smith, A. Vass, and J. Keddie, "Infrared methods for gas detection," in Mid-infrared Semiconductor Optoelectronics (Springer-Verlag, 2006).
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in Mid-infrared Semiconductor Optoelectronics
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Crowder, J.G.1
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Keddie, J.4
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5
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84877116919
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Demonstration of high-Q mid-infrared chalcogenide glass-on-silicon resonators
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H. Lin, L. Li, Y. Zou, S. Danto, J. D. Musgraves, K. Richardson, S. Kozacik, M. Murakowski, D. Prather, P. T. Lin, V. Singh, A. Agarwal, L. C. Kimerling, and J. Hu, "Demonstration of high-Q mid-infrared chalcogenide glass-on-silicon resonators," Opt. Lett. 38(9), 1470-1472 (2013).
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Opt. Lett.
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Lin, H.1
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Kozacik, S.7
Murakowski, M.8
Prather, D.9
Lin, P.T.10
Singh, V.11
Agarwal, A.12
Kimerling, L.C.13
Hu, J.14
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6
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Integrated high-quality factor silicon-on-sapphire ring resonators for the mid-infrared
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R. Shankar, I. Bulu, and M. Loncar, "Integrated high-quality factor silicon-on-sapphire ring resonators for the mid-infrared," Appl. Phys. Lett. 102(5), 051108 (2013).
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T. Baehr-Jones, A. Spott, R. Ilic, A. Spott, B. Penkov, W. Asher, and M. Hochberg, "Silicon-on-sapphire integrated waveguides for the mid-infrared," Opt. Express 18(12), 12127-12135 (2010).
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Opt. Express
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Baehr-Jones, T.1
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S. Khan, J. Chiles, J. Ma, and S. Fathpour, "Silicon-on-nitride waveguides for mid- and near-infrared integrated photonics," Appl. Phys. Lett. 102(12), 121104 (2013).
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P. T. Lin, V. Singh, L. Kimerling, and A. Agarwal, "Planar silicon nitride mid-infrared devices," Appl. Phys. Lett. 102(25), 251121 (2013).
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Appl. Phys. Lett.
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Z. Cheng, X. Chen, C. Y. Wong, K. Xu, and H. K. Tsang, "Mid-infrared suspended membrane waveguide and ring resonator on silicon-on-insulator," IEEE Photonics Journal 4(5), 1510-1519 (2012).
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G. Z. Mashanovich, M. M. Miloševic, M. Nedeljkovic, N. Owens, B. Xiong, E. J. Teo, and Y. Hu, "Low loss silicon waveguides for the mid-infrared," Opt. Express 19(8), 7112-7119 (2011).
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Opt. Express
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P. T. Lin, V. Singh, Y. Cai, L. C. Kimerling, and A. Agarwal, "Air-clad silicon pedestal structures for broadband mid-infrared microphotonics," Opt. Lett. 38(7), 1031-1033 (2013).
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Y. C. Chang, V. Paeder, L. Hvozdara, J. M. Hartmann, and H. P. Herzig, "Low-loss germanium strip waveguides on silicon for the mid-infrared," Opt. Lett. 37(14), 2883-2885 (2012).
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R. Soref, "Mid-infrared photonics in silicon and germanium," Nat. Photonics 4(8), 495-497 (2010).
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High-efficiency SOI fiber-tochip grating couplers and low-loss waveguides for the short-wave infrared
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N. Hattasan, B. Kuyken, F. Leo, E. Ryckeboer, D. Vermeulen, and G. Roelkens, "High-efficiency SOI fiber-tochip grating couplers and low-loss waveguides for the short-wave infrared," IEEE Photon. Technol. Lett. 24(17), 1536-1538 (2012).
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Passive SOI devices for the short-wave infrared
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Spain
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F. Leo, B. Kuyken, N. Hattasan, R. Baets, and G. Roelkens, "Passive SOI devices for the short-wave infrared," European Conference on Integrated Optics (ECIO 2012), 156-158, Spain (2012)
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Silicon-on-insulator spectrometers with integrated GaInAsSb photodiodes for wide-band spectroscopy from 1510 to 2300 nm
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E. Ryckeboer, A. Gassenq, M. Muneeb, N. Hattasan, S. Pathak, L. Cerutti, J.-B. Rodriguez, E. Tournié, W. Bogaerts, R. Baets, and G. Roelkens, "Silicon-on-insulator spectrometers with integrated GaInAsSb photodiodes for wide-band spectroscopy from 1510 to 2300 nm," Opt. Express 21(5), 6101-6108 (2013).
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Baets, R.10
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Demonstration of Silicon-on-insulator mid-infrared spectrometers operating at 3.8 μm
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M. Muneeb, X. Chen, P. Verheyen, G. Lepage, S. Pathak, E. Ryckeboer, A. Malik, B. Kuyken, M. Nedeljkovic, J. Van Campenhout, G. Z. Mashanovich, and G. Roelkens, "Demonstration of Silicon-on-insulator mid-infrared spectrometers operating at 3.8 μm," Opt. Express 21(10), 11659-11669 (2013).
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Germanium-on-silicon mid-infrared waveguides and Mach-Zehnder interferometers
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A. Malik, M. Muneeb, Y. Shimura, J. Van Campenhout, G. Roelkens," Germanium-on-silicon mid-infrared waveguides and Mach-Zehnder interferometers," accepted for publication in IEEE Photonics Conference (2013).
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accepted for publication in IEEE Photonics Conference
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Malik, A.1
Muneeb, M.2
Shimura, Y.3
Van Campenhout, J.4
Roelkens, G.5
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84866287247
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On-chip octave-spanning supercontinuum in nanostructured silicon waveguides using ultralow pulse energy
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L. Zhang, Q. Lin, Y. Yue, Y. Yan, R. Beausoleil, A. Agarwal, L. Kimerling, J. Michel, and A. Willner, "On-chip octave-spanning supercontinuum in nanostructured silicon waveguides using ultralow pulse energy," Journal of Sel. Topics in Quantum Electronics 18(6), 1799-1806 (2012).
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Journal of Sel. Topics in Quantum Electronics
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Nonlinear Fiber Optics
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(Springer Berlin Heidelberg, )
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50 dB parametric on-chip gain in silicon photonic wires
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B. Kuyken, X. Liu, G. Roelkens, R. Baets, R. M. Osgood, Jr., and W. M. J. Green, "50 dB parametric on-chip gain in silicon photonic wires," Opt. Lett. 36(22), 4401-4403 (2011).
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Opt. Lett.
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Mid-infrared to telecomband supercontinuum generation in highly nonlinear silicon-on-insulator wire waveguides
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B. Kuyken, X. Liu, R. M. Osgood, Jr., R. Baets, G. Roelkens, and W. M. J. Green, "Mid-infrared to telecomband supercontinuum generation in highly nonlinear silicon-on-insulator wire waveguides," Opt. Express 19(21), 20172-20181 (2011).
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A silicon-based widely tunable short-wave infrared optical parametric oscillator
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B. Kuyken, X. Liu, R. M. Osgood, Jr., R. Baets, G. Roelkens, and W. M. J. Green, "A silicon-based widely tunable short-wave infrared optical parametric oscillator," Opt. Express 21(5), 5931-5940 (2013).
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Bridging the mid-infraredto- telecom gap with silicon nanophotonic spectral translation
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X. Liu, B. Kuyken, G. Roelkens, R. Baets, R. M. Osgood, Jr., and W. M. J. Green, "Bridging the mid-infraredto- telecom gap with silicon nanophotonic spectral translation," Nat. Photonics 6(10), 667-671 (2012).
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26
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84887465294
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Mid-infrared supercontinuum generation in silicon waveguides
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CLEO, CW3H.1, United States
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M. Lamont, R. Lau, A. Griffith, Y. Wen, Y. Okawachi, M. Lipson, and A. Gaeta, "Mid-infrared supercontinuum generation in silicon waveguides," CLEO, CW3H.1, United States (2013).
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84903764536
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Midinfrared generation by frequency down-conversion across 1.2 octaves in a normally-dispersive silicon wire
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CLEO, CTh1F.2, United States
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B. Kuyken, P. Verheyen, P. Tannouri, J. Van Campenhout, R. Baets, G. Roelkens, and W. M. J. Green, Midinfrared generation by frequency down-conversion across 1.2 octaves in a normally-dispersive silicon wire," CLEO, CTh1F.2, United States, 2013.
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B. Kuyken, S. Clemmen, S. K. Selvaraja, W. Bogaerts, D. Van Thourhout, Ph. Emplit, S. Massar, G. Roelkens, and R. Baets, "On-chip parametric amplification with 26.5 dB gain at telecommunication wavelengths using CMOS-compatible hydrogenated amorphous silicon waveguides," Opt. Lett. 36(4), 552-554 (2011).
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S. Uvin, U. Dave, B. Kuyken, S. Selvaraja, F. Leo, and G. Roelkens, "Mid-infrared to telecom-band stable supercontinuum generation in hydrogenated amorphous silicon waveguides," accepted for publication in IEEE Photonics Conference, United States, 2013.
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CLEO, CTh5D, United States
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D. Ahn, C. Y. Hong, J. Liu, W. Giziewicz, M. Beals, L. C. Kimerling, J. Michel, J. Chen, and F. X. Kärtner, "High performance, waveguide integrated Ge photodetectors," Opt. Express 15(7), 3916-3921 (2007).
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