Search Results - "McNab, Sharee"

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  1. 1

    Losses in single-mode silicon-on-insulator strip waveguides and bends by Vlasov, Yurii, McNab, Sharee

    Published in Optics express (19-04-2004)
    “…We report the fabrication and accurate measurement of propagation and bending losses in single-mode silicon waveguides with submicron dimensions fabricated on…”
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    Journal Article
  2. 2

    Active control of slow light on a chip with photonic crystal waveguides by Vlasov, Yurii A, O'Boyle, Martin, Hamann, Hendrik F, McNab, Sharee J

    Published in Nature (03-11-2005)
    “…It is known that light can be slowed down in dispersive materials near resonances. Dramatic reduction of the light group velocity-and even bringing light…”
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    Journal Article
  3. 3

    Multiple Initial Point Approach to Solving Power Flows for Monte Carlo Studies by Schipper, Josh, McNab, Sharee, Kueh, Yuyin, Mukhedkar, Radnya

    Published in Energies (Basel) (01-09-2022)
    “…Power flow solvers typically start from an initial point of power injection. This paper constructs a system of multiple initial points (SMIP) to enable…”
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    Journal Article
  4. 4

    Ultra-low loss photonic integrated circuit with membrane-type photonic crystal waveguides by McNab, Sharee, Moll, Nikolaj, Vlasov, Yurii

    Published in Optics express (03-11-2003)
    “…We report the design and testing of an SOI-based photonic integrated circuit containing two-dimensional membrane-type photonic crystal waveguides. The circuit…”
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    Journal Article
  5. 5

    C-band wavelength conversion in silicon photonic wire waveguides by Espinola, Richard, Dadap, Jerry, Osgood, Jr, Richard, McNab, Sharee, Vlasov, Yurii

    Published in Optics express (30-05-2005)
    “…We demonstrate C-band wavelength conversion in Si photonic-wire waveguides with submicron cross-section by means of nonresonant, nondegenerate four-wave mixing…”
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    Journal Article
  6. 6

    Cross-phase modulation-induced spectral and temporal effects on co-propagating femtosecond pulses in silicon photonic wires by Hsieh, I-Wei, Chen, Xiaogang, Dadap, Jerry I, Panoiu, Nicolae C, Osgood, Jr, Richard M, McNab, Sharee J, Vlasov, Yurii A

    Published in Optics express (05-02-2007)
    “…By performing time-resolved experiments and power-dependent measurements using femtosecond pulses inside submicron cross-section Si photonic-wire waveguides,…”
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    Journal Article
  7. 7

    Raman amplification in ultrasmall silicon-on-insulator wire waveguides by Espinola, Richard, Dadap, Jerry, Osgood, Jr, Richard, McNab, Sharee, Vlasov, Yurii

    Published in Optics express (09-08-2004)
    “…We measure stimulated Raman gain at 1550 nm in an ultrasmall SOI strip waveguide, cross-section of 0.098 microm2. We obtain signal amplification of up to 0.7…”
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    Journal Article
  8. 8

    Ultrafast-pulse self-phase modulation and third-order dispersion in Si photonic wire-waveguides by Hsieh, I-Wei, Chen, Xiaogang, Dadap, Jerry I, Panoiu, Nicolae C, Osgood, Richard M, McNab, Sharee J, Vlasov, Yurii A

    Published in Optics express (11-12-2006)
    “…By propagating femtosecond pulses inside submicron-crosssection Si photonic-wire waveguides with anomalous dispersion, we demonstrate that the…”
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    Journal Article
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  12. 12

    Stable SRAM cell design for the 32 nm node and beyond by Chang, L., Fried, D.M., Hergenrother, J., Sleight, J.W., Dennard, R.H., Montoye, R.K., Sekaric, L., McNab, S.J., Topol, A.W., Adams, C.D., Guarini, K.W., Haensch, W.

    “…SRAM cell stability will be a primary concern for future technologies due to variability and decreasing power supply voltages. 6T-SRAM can be optimized for…”
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    Conference Proceeding
  13. 13

    Determination of Third-Order Dispersion Coefficient and Observation of Soliton Radiation in Si-Wire Waveguides by I-Wei Hsieh, Xiaogang Chen, Dadap, J.I., Panoiu, N.C., Osgood, R.M.

    “…Utilizing strong nonlinearity and dispersion engineering in silicon-wire waveguides, we observe development of soliton radiation at high power and ultrashort…”
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    Conference Proceeding
  14. 14

    Coupling into the slow light mode in slab-type photonic crystal waveguides by Vlasov, Yurii A, McNab, Sharee J

    Published 14-04-2005
    “…Coupling of external light signals into a photonic crystal waveguide becomes increasingly inefficient as the group velocity of the waveguiding mode slows down…”
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    Journal Article
  15. 15

    Transmission of Slow Light through Photonic Crystal Waveguide Bends by Assefa, Solomon, McNab, Sharee J, Vlasov, Yurii A

    Published 14-10-2005
    “…The spectral dependence of a bending loss of cascaded 60-degree bends in photonic crystal (PhC) waveguides is explored in a slab-type silicon-on-insulator…”
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    Journal Article
  16. 16

    Mapping the optical properties of slab-type two-dimensional photonic crystal waveguides by Dulkeith, Eric, McNab, Sharee J, Vlasov, Yurii A

    Published 19-04-2005
    “…We report on systematic experimental mapping of the transmission properties of two-dimensional silicon-on-insulator photonic crystal waveguides for a broad…”
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    Journal Article
  17. 17

    Observation of surface states in a truncated two-dimensional photonic crystal slab by Vlasov, Yurii A, Moll, Nikolaj, McNab, Sharee J

    Published 13-04-2004
    “…The effect of lattice termination on the surface states in a two-dimensional truncated photonic crystal slab is experimentally studied in a high index contrast…”
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    Journal Article
  18. 18

    Ultrafast Optical-pulse Propagation on Si Chips by Osgood, R., Panoiu, N., Hsieh, I.-W., Chen, X., Dadap, J.I., McNab, S.J., Dulkeith, E.F., Vlasov, Y.

    “…The extremely strong crystalline-Si optical nonlinearity allows a wide variety of fs-pulse propagation effects to be readily seen at low input powers on Si…”
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    Conference Proceeding
  19. 19

    Self-Phase Modulation of Femtosecond Pulses in Photonic Wire Waveguides by Hsieh, I.-W., Chen, X., Dadap, J.I., Panoiu, N.C., Osgood, R.M., McNab, S.J., Vlasov, Y.

    “…We use femtosecond pulses propagating inside a submicron cross-section Si photonic-wire waveguide to demonstrate strong interaction between self-phase…”
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    Conference Proceeding