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G. Kurczveil, M. J. R. Heck, J. D. Peters, J. M. Garcia, D. Spencer, and J. E. Bowers, "An Integrated hybrid silicon multiwavelength AWG laser," IEEE J. Sel. Topics Quantum Electron., vol. 17, no. 6, pp. 1521-1527, Nov./Dec. 2011.
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37
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Characterization of insertion loss and back reflection in Passive Hybrid Silicon Tapers
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38
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London, U.K.
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P. Pintus, M. J. R. Heck, G. Kurczveil, and J. E. Bowers, "Low-loss hybrid silicon tapers," presented at the Group IV Photonics, London, U.K., 2011.
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Presented at the Group IV Photonics
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SPIE Photonics West
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Kurczveil, G.1
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45
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E. J. Skogen, J. W. Raring, G. B. Morrison, C. S. Wang, V. Lal, M. L. Masanovic, and L. A. Coldren, "Monolithically integrated active components: A quantum-well intermixing approach," IEEE J. Sel. Topics Quantum Electron., vol. 11, no. 2, pp. 343-355, Mar./Apr. 2005. (Pubitemid 40682986)
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M. N. Sysak, J. O. Anthes, J. E. Bowers, O. Raday, and R. Jones, "Integration of hybrid silicon lasers and electroabsorption modulators," Opt. Exp., vol. 16, no. 17, pp. 12478-12486, Aug. 2008.
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Opt. Exp.
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S. R. Jain, M. N. Sysak, G. Kurczveil, and J. E. Bowers, "Integrated hybrid silicon DFB laser-EAM array using quantum well intermixing," Opt. Exp., vol. 19, no. 14, pp. 13692-13699, 2011.
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Opt. Exp.
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Proc. IEEE Int. Semicond. Laser Conf
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Opt. Exp.
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H. Park, M. N. Sysak, H.W. Chen, A. W. Fang, D. Liang, L. Liao, B. R. Koch, J. Bovington, Y. Tang, K. Wong, M. Jacob-Mitos, R. Jones, and J. E. Bowers, "Device and integration technology for silicon photonic transmitters," IEEE J. Sel. Topics Quantum Electron., vol. 17, no. 3, pp. 671-688, May/Jun. 2011.
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H.-H. Chang, A. W. Fang, M. N. Sysak, H. Park, R. Jones, O. Cohen, O Raday, M. J. Paniccia, and J. E. Bowers, "1310 nm silicon evanescent laser," Opt. Exp., vol. 15, no. 18, pp. 11466-11471, 2007.
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G. Fish, J. Roth, V. Kaman andA. Fang, "Advancesin III-V heterogeneous integration on silicon," in Proc. IEEE Photonics Conf. (IPC), Sep. 23-27, 2012, pp. 747-748.
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M. N. Sysak, D. Liang, R. Jones, G. Kurczveil, M. Piels, M. Fiorentino, R. G. Beausoleil, and J. E. Bowers, "Hybrid silicon laser technology: A thermal perspective," IEEE J. Sel. Topics Quantum Electron., vol. 17, no. 6, pp. 1490-1498, Nov./Dec. 2011.
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M. L. Davenport, G. Kurczveil, M. J. R. Heck, and J. E. Bowers, "A hybrid silicon colliding pulse mode-locked laser with integrated passive waveguide section," in Proc. IEEE Photon Conf., 2012, pp. 816-817.
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Proc. IEEE Photon Conf.
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Proc. IEEE Photon. Conf.
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Opt. Exp.
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Opt. Exp.
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Opt. Exp.
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Opt. Exp.
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74
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79958222230
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Silicon ring isolators with bonded nonreciprocal magneto-optic garnets
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M.-C. Tien, T. Mizumoto, P. Pintus, H. Kroemer, and J. E. Bowers, "Silicon ring isolators with bonded nonreciprocal magneto-optic garnets," Opt. Exp., vol. 19, no. 12, pp. 11740-11745, 2011.
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Opt. Exp.
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Tien, M.-C.1
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Bowers, J.E.5
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75
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82455164160
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On-chip optical isolation in monolithically integrated non-reciprocal optical resonators
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L. Bi, J. Hu, P. Jiang, D. H. Kim, G. F. Dionne, and L. C. Kimerling, "On-chip optical isolation in monolithically integrated non-reciprocal optical resonators," Nat. Photon., vol. 5, pp. 758-762, 2011.
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Nat. Photon.
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76
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82955217615
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Design of magneto-optical ring isolator on SOI based on the finite-element method
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Nov.
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P. Pintus, M.-C. Tien, and J. E. Bowers, "Design of magneto-optical ring isolator on SOI based on the finite-element method," IEEE Photon. Tech-nol. Lett., vol. 23, no. 22, pp. 1670-1672, Nov. 2011.
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IEEE Photon. Tech-nol. Lett.
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Pintus, P.1
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77
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82955221800
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4 waveguides based on the finite element method
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4 waveguides based on the finite element method," Opt. Lett., vol. 36, no. 23, pp. 4599-4601, 2011.
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Opt. Lett.
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Pintus, P.1
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79
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82055186659
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Planar waveguides with less than 0.1 dB/m propagation loss fabricated with wafer bonding
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J. F. Bauters, M. J. R. Heck, D. John, J. S. Barton, A. Leinse, R. G. Heideman, D. J. Blumenthal, and J. E. Bowers, "Planar waveguides with less than 0.1 dB/m propagation loss fabricated with wafer bonding," Opt. Soc. Amer Opt. Exp., vol. 19, no. 24, pp. 24090-24101, 2011.
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Opt. Soc. Amer Opt. Exp.
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Bauters, J.F.1
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Blumenthal, D.J.7
Bowers, J.E.8
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80
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79951615384
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Ultra-low-loss high-aspect-ratio Si3N4 waveguides
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J. F. Bauters, M. J. R. Heck, D. John, D. Dai, M.-C. Tien, J. S. Barton, A. Leinse, R. G. Heideman, D. J. Blumenthal, and J. E. Bowers, "Ultra-low-loss high-aspect-ratio Si3N4 waveguides," Opt. Exp., vol. 19, no. 4, pp. 3163-3174, 2011.
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Opt. Exp.
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Bowers, J.E.10
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81
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79960546820
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Low-loss Si3N4 arrayed-waveguide grating (de)multiplexer using nano-core optical waveguides
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D. Dai, Z. Wang, J. F. Bauters, M.-C. Tien, M. J. R. Heck, D. J. Blumenthal, and J. E. Bowers, "Low-loss Si3N4 arrayed-waveguide grating (de)multiplexer using nano-core optical waveguides," Opt. Soc. Amer. Opt. Exp., vol. 19, no. 15, pp. 14130-14136, 2011.
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Opt. Soc. Amer. Opt. Exp.
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Dai, D.1
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82
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79959898079
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Ultra-high quality factor of Si3N4 ring resonators with integrated directional couplers
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M.-C. Tien, J. F. Bauters, M. J. R. Heck, D. J. Blumenthal, and J. E. Bowers, "Ultra-high quality factor of Si3N4 ring resonators with integrated directional couplers," Opt. Exp., vol. 19, no. 14, pp. 13551-13556, 2011.
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Opt. Exp.
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Tien, M.-C.1
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83
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84877872888
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Planar silica waveguide polarizers
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doi: 10.1109/JPHOT.2012.2234095
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J. F. Bauters, M. J. R. Heck, D. Dai, J. S. Barton, D. J. Blumenthal, and J. E. Bowers, "Planar silica waveguide polarizers," IEEE Photon. J., vol. PP, no. 99, pp. 1, doi: 10.1109/JPHOT.2012.2234095.
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IEEE Photon. J.
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Bauters, J.F.1
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84
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Ultra-low loss Si3N4 waveguides with low nonlinearity and high power handling capability
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M.C. Tien, J. F. Bauters, M. J. R. Heck, D. J. Blumenthal, and J. E. Bowers, "Ultra-low loss Si3N4 waveguides with low nonlinearity and high power handling capability," Opt. Exp., vol. 18, pp. 23562-23568, 2010.
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Opt. Exp.
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85
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Monolithic integration of silicon-, germanium-, and silica-based optical devices for telecommunications applications
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May/Jun.
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T. Tsuchizawa, K. Yamada, T. Watanabe, S. Park, H. Nishi, R. Kou, H. Shinojima, and S. Itabashi, "Monolithic integration of silicon-, germanium-, and silica-based optical devices for telecommunications applications," IEEE J. Sel. Top. Quantum Electron, vol. 17, no. 3, pp. 516-525, May/Jun. 2011.
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IEEE J. Sel. Top. Quantum Electron
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86
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Silicon on ultra-low-loss waveguide photonic integration platform
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J. F. Bauters, M. L. Davenport, M. J. R. Heck, J. K. Doylend, A. Chen, A. W. Fang, and J. E. Bowers, "Silicon on ultra-low-loss waveguide photonic integration platform," Opt. Exp., vol. 21, no. 1, pp. 544-555, 2013.
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Opt. Exp.
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87
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77957847322
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Discretely tunable laser based on filtered feedback for telecommunication applications
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Sep./Oct.
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B. Docter, J. Pozo, S. Beri, I. V. Ermakov, J. Danckaert, M. K. Smit, and F. Karouta, "Discretely tunable laser based on filtered feedback for telecommunication applications," IEEE J. Sel. Topics Quantum Electron., vol. 16, no. 5, pp. 1405-1412, Sep./Oct. 2010.
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88
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Monolithic AWG-based discretely tunable laser diode with nanosecond switching speed
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M. J. R. Heck, A. la Porta, X. J. M. Leijtens, L. M. Augustin, T. de Vries, E. Smalbrugge, Y. S. Oei, R. Nötzel, R. Gaudino, D. J. Robbins, and M. K. Smit, "Monolithic AWG-based discretely tunable laser diode with nanosecond switching speed, "IEEE Photon. Technol. Lett., vol. 21, no. 13, pp. 905-907, 2009.
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89
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An integrated recirculating optical buffer
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H. Park, J. P. Mack, D. J. Blumenthal, and J. E. Bowers, "An integrated recirculating optical buffer," Opt. Exp., vol. 16, no. 15, pp. 11124-11131, 2008.
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Opt. Exp.
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90
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Integrated hybrid Si/InGaAs 50 Gb/s DQPSK receiver
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Aug.
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S. Faralli, K. N. Nguyen, J. D. Peters, D. T. Spencer, D. J. Blumenthal, and J. E. Bowers, "Integrated hybrid Si/InGaAs 50 Gb/s DQPSK receiver," Opt. Exp., vol. 20, no. 18, pp. 19726-19734, Aug. 2012.
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Opt. Exp.
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91
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Novel concept for ultracompact polarization splitter-rotator based on silicon nanowires
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D. Dai and J. E. Bowers, "Novel concept for ultracompact polarization splitter-rotator based on silicon nanowires," Opt. Exp., vol. 19, no. 11, pp. 10940-10949, 2011.
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Opt. Exp.
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92
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Two-dimensional free-space beam steering with an optical phased array on silicon-on-insulator
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J. K. Doylend, M. J. R. Heck, J. T. Bovington, J. D. Peters, L. A. Coldren, and J. E. Bowers, "Two-dimensional free-space beam steering with an optical phased array on silicon-on-insulator," Opt. Soc. Amer. Opt. Exp., vol. 19, no. 22, pp. 21595-21604, 2011.
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Opt. Soc. Amer. Opt. Exp.
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93
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84881035208
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Hybrid silicon transmitter using quantum well intermixing
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to be published
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S. R. Jain, M. N. Sysak, M. Piels, and J. E. Bowers, "Hybrid silicon transmitter using quantum well intermixing," in Proc. OFC, 2013, to be published.
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Proc. OFC
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Jain, S.R.1
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94
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Jun.
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L. Chen, Y. Tang, J.E. Bowers, and L. Theogarajan, "CMOS enabled silicon photonics for data center packet switching," in Proc. IEEE Microwave Symp. Digest, Jun. 2012, pp. 1-3.
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Proc. IEEE Microwave Symp. Digest
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Chen, L.1
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95
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L. Chen, E. Hall, L. Theogarajan, and J. E. Bowers, "Photonic switching for data center applications," vol. 3, no. 5, pp. 834-844, Oct. 2011.
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Photonic Switching for Data Center Applications
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Chen, L.1
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Wafer scale integration of CMOS chips for biomedical applications via self-aligned masking
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Dec.
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A. Uddin, K. Milaninia, C.H. Chen, and L. Theogarajan, "Wafer scale integration of CMOS chips for biomedical applications via self-aligned masking," IEEE Trans. Compon., Packag., Manuf. Technol., vol. 1, no. 12, pp. 1996-2004, Dec. 2011.
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IEEE Trans. Compon., Packag., Manuf. Technol.
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97
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84881044883
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Digitally tunable optical power equalization for large port count optical switches
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to be published
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L. Chen, J. Hulme, A. Sohdi, J. Roth, V. Kaman, G. Fish, J. E. Bowers, and L. Theogarajan, "Digitally tunable optical power equalization for large port count optical switches," in Proc. OFC, 2013, to be published.
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Proc. OFC
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Chen, L.1
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98
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Low threshold electrically-pumped hybrid silicon microring lasers
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Nov./Dec.
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D. Liang, M. Fiorentino, S. Srinivasan, J. E. Bowers, and R. G. Beausoleil, "Low threshold electrically-pumped hybrid silicon microring lasers," IEEE J. Sel. Topics Quantum Electron., vol. 17, no. 6, pp. 1528-1533, Nov./Dec. 2011.
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99
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Optimization of hybrid silicon microring lasers
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Jun.
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D. Liang, M. Fiorentino, S. Srinivasan, S. T. Todd, G. Kurczveil, J. E. Bowers, and R. G. Beausoleil, "Optimization of hybrid silicon microring lasers," IEEE Photon. J., vol. 3, no. 3, pp. 580-587, Jun. 2011.
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IEEE Photon. J.
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100
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An ultra-small, low-power, all-optical flip-flop memory on a silicon chip
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L. Liu, R. Kumar, K. Huybrechts, T. Spuesens, G. Roelkens, E.J. Geluk, T. de Vries, P. Regreny, D. Van Thourhout, R. Baets, and G. Morthier, "An ultra-small, low-power, all-optical flip-flop memory on a silicon chip," Nat. Photon., vol. 4, pp. 182-187, 2010.
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Nat. Photon.
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Moore's law in photonics
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Proc. IEEE Photon. Conf.
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J. Van Campenhout, P. Rojo-Romeo, P. Regreny, C. Seassal, D. Van Thourhout, S. Verstuyft, L. Di Cioccio, J.-M. Fedeli, C. Lagahe, and R. Baets, "Electrically pumped InP-based microdisk lasers integrated with a nanophotonic SOI waveguide circuit," Opt. Exp., vol. 15, no. 11, pp. 6744-6749, 2007. (Pubitemid 46827673)
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