Search Results - "Stevens, Ben J"

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  1. 1

    Epitaxially Regrown GaAs-Based Photonic Crystal Surface-Emitting Laser by Williams, D. M., Groom, K. M., Stevens, B. J., Childs, D. T. D., Taylor, R. J. E., Khamas, S., Hogg, R. A., Ikeda, N., Sugimoto, Y.

    Published in IEEE photonics technology letters (01-06-2012)
    “…A GaAs-based epitaxially regrown photonic crystal surface-emitting laser is proposed and demonstrated at room temperature. The photonic crystal band-structure…”
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    Journal Article
  2. 2

    All-Semiconductor Photonic Crystal Surface-Emitting Lasers Based on Epitaxial Regrowth by Taylor, R. J. E., Williams, D. M., Childs, D. T. D., Stevens, B. J., Shepherd, L. R., Khamas, S., Groom, K. M., Hogg, R. A., Ikeda, N., Sugimoto, Y.

    “…The realization of all-semiconductor epitaxially regrown photonic crystal (PC) surface-emitting lasers is reported. PC coupling strengths, band structure,…”
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    Journal Article
  3. 3

    Tradeoffs in the Realization of Electrically Pumped Vertical External Cavity Surface Emitting Lasers by Orchard, J. R., Childs, D. T., Lin, L. C., Stevens, B. J., Williams, D. M., Hogg, R. A.

    “…The design and realization of substrate emitting 980-nm electrically pumped vertical-external-cavity surface-emitting lasers (EP-VECSELs) is reported. A method…”
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    Journal Article
  4. 4

    Optimisation of Coupling between Photonic Crystal and Active Elements in an Epitaxially Regrown GaAs Based Photonic Crystal Surface Emitting Laser by Williams, David M, Groom, Kristian M, Stevens, Ben J, Childs, David T. D, Taylor, Richard J. E, Khamas, Salam, Hogg, Richard A, Ikeda, Naoki, Sugimoto, Yoshimasa

    Published in Japanese Journal of Applied Physics (01-02-2012)
    “…The waveguide design of a GaAs based, epitaxially regrown photonic crystal surface emitting laser is discussed so as to optimise the coupling of the photonic…”
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    Journal Article
  5. 5

    Design Rules and Characterisation of Electrically Pumped Vertical External Cavity Surface Emitting Lasers by Orchard, Jonathan R, Childs, David T. D, Lin, Li Chih, Stevens, Ben J, Williams, David M, Hogg, Richard A

    Published in Japanese Journal of Applied Physics (01-04-2011)
    “…We present an experimental study of the effect of substrate doping on the operating characteristics of substrate emitting electrically pumped vertical external…”
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    Journal Article
  6. 6

    Proposal for Common Active 1.3- \mu m Quantum Dot Electroabsorption Modulated DFB Laser by Sobhani, Soroush A., Stevens, Ben J., Babazadeh, Nasser, Takemasa, Keizo, Nishi, Kenichi, Sugawara, Mitsuru, Hogg, Richard A., Childs, David T. D.

    Published in IEEE photonics technology letters (15-03-2019)
    “…Opportunities for the monolithic integration of a novel common quantum dot (QD)-active electroabsorption modulated laser are explored. An electric-field and…”
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    Journal Article
  7. 7
  8. 8

    Proposal for Common Active 1.3-[Formula Omitted]m Quantum Dot Electroabsorption Modulated DFB Laser by Sobhani, Soroush A, Stevens, Ben J, Babazadeh, Nasser, Takemasa, Keizo, Nishi, Kenichi, Sugawara, Mitsuru, Hogg, Richard A, Childs, David T D

    Published in IEEE photonics technology letters (01-01-2019)
    “…Opportunities for the monolithic integration of a novel common quantum dot (QD)-active electroabsorption modulated laser are explored. An electric-field and…”
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    Journal Article
  9. 9

    Coherently Coupled Photonic-Crystal Surface-Emitting Laser Array by Taylor, Richard J. E., Childs, David T. D., Ivanov, Pavlo, Stevens, Ben J., Babazadeh, Nasser, Sarma, Jayanta, Khamas, Salam, Crombie, Alex J., Guangrui Li, Ternent, Gary, Thoms, Stephen, Haiping Zhou, Hogg, Richard A.

    “…The realization of a 1 × 2 coherently coupled photonic crystal surface emitting laser array is reported. New routes to power scaling are discussed and the…”
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    Journal Article
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  12. 12

    Resonant Tunnelling Diodes for next generation THz systems by Baba, Razvan, Jacobs, Kristof J.P., Stevens, Ben J., Harrison, Brett A., Watt, Adam P., Mukai, Toshikazu, Hogg, Richard A.

    “…Resonant tunnelling diodes (RTDs) are a strong candidate for future wireless communications in the THz spectrum (sub-millimetre waves), offering compact,…”
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    Conference Proceeding