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Results for III-V semiconductors

Publications & Outputs

  1. High-speed mid-wave infrared interband cascade photodetector at room temperature

    XIE, Z., HUANG, J., CHAI, X., DENG, Z., CHEN, Y., LU, Q., XU, Z., CHEN, J., ZHOU, Y. & CHEN, B., 20/11/2020, In: Optics Express. 28, 24, p. 36915-36923 9 p.

    Research output: Contribution to journalJournal articlepeer-review

  2. Extension of resonant cavity-enhanced photodetection into the MWIR and LWIR ranges using a Ga-free type-II strained-layer superlattice

    Letka, V., Bainbridge, A., Craig, A. P., Al-Saymari, F., Marshall, A. R. J., B.F., A. (ed.), G.F., F. (ed.), J.L., M. (ed.), L., Z. (ed.) & (SPIE), T. S. O. P-O. I. E., 20/07/2020.

    Research output: Contribution to conference - Without ISBN/ISSN Conference paperpeer-review

  3. A comparative study of graphite and silicon as suitable substrates for the self-catalysed growth of InAs nanowires by MBE

    Anyebe, E. A., Kesaria, M., Sanchez, A. M. & Zhuang, Q., 1/07/2020, In: Applied Physics A. 126, 6, 8 p., 427.

    Research output: Contribution to journalJournal articlepeer-review

  4. Electroluminescence enhancement in mid-infrared InAsSb resonant cavity light emitting diodes for CO 2 detection

    Al-Saymari, F. A., Craig, A. P., Noori, Y. J., Lu, Q., Marshall, A. R. J. & Krier, A., 1/05/2019, In: Applied Physics Letters. 114, 17, 4 p., 171103.

    Research output: Contribution to journalJournal articlepeer-review

  5. Extended short-wave infrared linear and Geiger mode avalanche photodiodes, based on 6.1 angstrom materials

    Craig, A. P., Jain, M., Meriggi, L., Cann, T., Niblett, A., Collins, X. & Marshall, A. R. J., 4/02/2019, In: Applied Physics Letters. 114, 5, 5 p., 053501.

    Research output: Contribution to journalJournal articlepeer-review

  6. Enhanced infrared photo-response from GaSb/GaAs quantum ring solar cells

    Carrington, P. J., Wagener, M. C., Botha, J. R., Sanchez, A. M. & Krier, A., 3/12/2012, In: Applied Physics Letters. 101, 23, 5 p., 231101.

    Research output: Contribution to journalJournal articlepeer-review

  7. Electron dominated impact ionization and avalanche gain characteristics in InAs photodiodes

    Marshall, A. R. J., Tan, C. H., Steer, M. J. & David, J. P. R., 15/09/2008, In: Applied Physics Letters. 93, 11, p. - 3 p., 111107.

    Research output: Contribution to journalJournal articlepeer-review

  8. Exciton confinement in InAs/InP quantum wires and quantum wells in the presence of a magnetic field.

    Sidor, Y., Partoens, B., Peeters, F. M., Maes, J., Hayne, M., Fuster, D., Gonzalez, Y., Gonzalez, L. & Moshchalkov, V. V., 19/11/2007, In: Physical review B. 76, 195320, p. 1-9 10 p.

    Research output: Contribution to journalJournal articlepeer-review

  9. Anisotropy of Spin Splitting and Spin Relaxation in Lateral Quantum Dots

    Falko, V. I., Altshuler, B. L. & Tsyplyatyev, O., 12/08/2005, In: Physical review letters. 95, 7, 4 p., 076603.

    Research output: Contribution to journalJournal articlepeer-review

  10. Room temperature extraordinary magnetoresistance of nonmagnetic narrow-gap semiconductor/metal composites: application to read-head sensors for ultrahigh-density magnetic recording

    Solin, S. A., Hines, D. R., Tsai, J-S., Pashkin, Y., Chung, S. J., Goel, N. & Santos, M., 01/2002, In: IEEE Transactions on Magnetics. 38, 1, p. 89-94 6 p.

    Research output: Contribution to journalJournal articlepeer-review