Search Results - "Bookey, H"

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  1. 1

    1.9 µm waveguide laser fabricated by ultrafast laser inscription in Tm:Lu2O3 ceramic by Morris, J, Stevenson, N K, Bookey, H T, Kar, A K, Brown, C T A, Hopkins, J-M, Dawson, M D, Lagatsky, A A

    Published in Optics express (26-06-2017)
    “…The ultrafast laser inscription technique has been used to fabricate channel waveguides in Tm3+-doped Lu2O3 ceramic gain medium for the first time to our…”
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    Journal Article
  2. 2

    Ultrafast-laser inscription of a three dimensional fan-out device for multicore fiber coupling applications by Thomson, R R, Bookey, H T, Psaila, N D, Fender, A, Campbell, S, Macpherson, W N, Barton, J S, Reid, D T, Kar, A K

    Published in Optics express (03-09-2007)
    “…A fan-out device has been fabricated using ultrafast-laser waveguide-inscription that enables each core of a multicore optical fiber (MCF) to be addressed by a…”
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    Journal Article
  3. 3

    Spectrally tailored mid-infrared super-continuum generation in a buried waveguide spanning 1750 nm to 5000 nm for atmospheric transmission by McCarthy, J, Bookey, H, Beecher, S, Lamb, R, Elder, I, Kar, A K

    Published in Applied physics letters (07-10-2013)
    “…We show how nonlinear spectral broadening in a buried chalcogenide mid-infrared waveguide can be used to reshape the spectrum of a femtosecond pulse train at…”
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    Journal Article
  4. 4

    Femtosecond laser inscription of optical waveguides in Bismuth ion doped glass by Psaila, N D, Thomson, R R, Bookey, H T, Kar, A K, Chiodo, N, Osellame, R, Cerullo, G, Brown, G, Jha, A, Shen, S

    Published in Optics express (30-10-2006)
    “…We report on the fabrication of high quality embedded channel waveguides inside Bi-doped silicate glass using femtosecond waveguide inscription. Waveguides are…”
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    Journal Article
  5. 5

    Spectral narrowing in coherent rayleigh scattering by Bookey, H T, Shneider, M N, Barker, P F

    Published in Physical review letters (28-09-2007)
    “…Spectral narrowing of the coherent Rayleigh scattering line shape in a room temperature CO(2) gas (2.5 x 10(23) m(-3)) with intense fields in the 10(15) W…”
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    Journal Article
  6. 6

    Multiple rare earth emissions in a multicore tellurite fiber with a single pump wavelength by Bookey, H T, Lousteau, J, Jha, A, Gayraud, N, Thomson, R R, Psaila, N D, Li, H, MacPherson, W N, Barton, J S, Kar, A K

    Published in Optics express (24-12-2007)
    “…A three-core tellurite glass fiber having different combinations of rare earth oxide dopants in each core has been fabricated using shaped die-extrusion. Three…”
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    Journal Article
  7. 7

    Er : Yb-Doped Oxyfluoride Silicate Glass Waveguide Laser Fabricated Using Ultrafast Laser Inscription by Psaila, N.D., Thomson, R.R., Bookey, H.T., Chiodo, N., Shen, S., Osellame, R., Cerullo, G., Jha, A., Kar, A.

    Published in IEEE photonics technology letters (15-01-2008)
    “…We demonstrate laser action from a waveguide fabricated in an Er:Yb-doped silicate glass using femtosecond laser inscription. Waveguides were fabricated using…”
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    Journal Article
  8. 8

    Anisotropy in the nonlinear absorption of elongated silver nanoparticles in silica, probed by femtosecond pulses by Rangel-Rojo, R., McCarthy, J., Bookey, H.T., Kar, A.K., Rodriguez-Fernandez, L., Cheang-Wong, J.C., Crespo-Sosa, A., Lopez-Suarez, A., Oliver, A., Rodriguez-Iglesias, V., Silva-Pereyra, H.G.

    Published in Optics communications (01-05-2009)
    “…We present measurements of the anisotropy of the nonlinear absorption of a silica matrix doped with aligned spheroidal silver nanoparticles, produced by a…”
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    Journal Article
  9. 9

    Narrow-band coherent Rayleigh scattering by Bookey, H. T., Bishop, A. I., Shneider, M. N., Barker, P. F.

    Published in Journal of Raman spectroscopy (01-06-2006)
    “…We describe the first implementation of narrow‐band coherent Rayleigh scattering (CRS) for high spectral resolution of CRS line shapes. Using intensities in…”
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    Journal Article
  10. 10

    Nonlinear optical properties of chalcogenide glasses: Observation of multiphoton absorption by Bindra, K. S., Bookey, H. T., Kar, A. K., Wherrett, B. S., Liu, X., Jha, A.

    Published in Applied physics letters (24-09-2001)
    “…We report observation of four- and five-photon absorption in the chalcogenide glasses at the telecommunication wavelengths. The nonlinear refractive index is…”
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    Journal Article
  11. 11

    Tellurite Glasses for Broadband Amplifiers and Integrated Optics by Shen, Shaoxiong, Jha, Animesh, Liu, Xiaobo, Naftaly, Mira, Bindra, Kushvinder, Bookey, Henry J., Kar, Ajoy K.

    Published in Journal of the American Ceramic Society (01-06-2002)
    “…The present investigation discusses the advantage of using RE‐ion‐doped (Nd3+, Tm3+, and Er3+) TeO2 glasses for developing fiber and planar broadband…”
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    Journal Article Conference Proceeding
  12. 12

    Optically active erbium-doped waveguides fabricated using a single-sol-gel-deposition technique by Thomson, R.R., Bookey, H.T., Ur-Rehman, H., Liu, S., Suyal, N., Kar, A.K.

    Published in Journal of lightwave technology (01-12-2005)
    “…We present the results of optical-characterization experiments conducted on optically active erbium-doped waveguides. Using selected characterization results…”
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    Journal Article
  13. 13

    Inorganic glasses as Kerr-like media by Jha, Animesh, Liu, X., Kar, A.K., Bookey, H.T.

    “…High-refractive index chalcogenide and heavy-metal oxide glasses have been developed recently for their application as all-optical switching devices in…”
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    Journal Article
  14. 14
  15. 15

    Er:Yb-doped oxyfluoride silicate glass waveguide amplifier fabricated using femtosecond laser inscription by Psaila, N. D., Thomson, R. R., Bookey, H. T., Kar, A. K., Chiodo, N., Osellame, R., Cerullo, G., Jha, A., Shen, S.

    Published in Applied physics letters (26-03-2007)
    “…The authors report net gain from a channel waveguide fabricated in an Er:Yb-doped oxyfluoride silicate glass substrate using femtosecond laser waveguide…”
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    Journal Article
  16. 16

    Ultrafast laser inscription of low loss waveguides in polycrystalline ZnSe by Macdonald, J R, Thomson, R R, Psaila, N D, Beecher, S J, Bookey, H T, Kar, A K

    “…We describe the fabrication of optical waveguides in polycrystalline ZnSe using ultrafast laser inscription. The optimum waveguide, characterized at 800 nm,…”
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    Conference Proceeding
  17. 17

    Mid-Infrared guiding and nonlinear spectral broadening in ultrafast laser inscribed gallium lanthanum sulphide waveguides by McCarthy, J E, Bookey, H T, Psaila, N D, Thomson, R R, Kar, A K

    “…Spectral broadening spanning 850 nm (-15 dB points) was observed in an ultrafast laser inscribed gallium lanthanum sulphide waveguide under excitation of…”
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    Conference Proceeding
  18. 18

    1.9 µm waveguide laser fabricated by ultrafast laser inscription in Tm:Lu 2 O 3 ceramic by Morris, J, Stevenson, N K, Bookey, H T, Kar, A K, Brown, C T A, Hopkins, J-M, Dawson, M D, Lagatsky, A A

    Published in Optics express (26-06-2017)
    “…The ultrafast laser inscription technique has been used to fabricate channel waveguides in Tm -doped Lu O ceramic gain medium for the first time to our…”
    Get full text
    Journal Article
  19. 19

    Femtosecond Laser Inscription of Low Insertion Loss Waveguides in Z-Cut Lithium Niobate by Bookey, H.T., Thomson, R.R., Psaila, N.D., Kar, A.K., Chiodo, N., Osellame, R., Cerullo, G.

    Published in IEEE photonics technology letters (15-06-2007)
    “…A low insertion loss waveguide is fabricated in z-cut lithium niobate using femtosecond laser waveguide inscription. To fabricate a waveguide exhibiting both…”
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    Journal Article
  20. 20

    Internal gain from an erbium-doped oxyfluoride-silicate glass waveguide fabricated using femtosecond waveguide inscription by Thomson, R.R., Bookey, H.T., Psaila, N., Campbell, S., Reid, D.T., Shaoxiong Shen, Jha, A., Kar, A.K.

    Published in IEEE photonics technology letters (01-07-2006)
    “…A channel waveguide is fabricated inside an erbium-doped oxyfluoride silicate glass sample using femtosecond pulses in the low repetition rate regime. The…”
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    Journal Article