Search Results - "Sou, I. K."

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  1. 1

    Pseudogap and proximity effect in the Bi2Te3/Fe1+yTe interfacial superconductor by He, M. Q., Shen, J. Y., Petrović, A. P., He, Q. L., Liu, H. C., Zheng, Y., Wong, C. H., Chen, Q. H., Wang, J. N., Law, K. T., Sou, I. K., Lortz, R.

    Published in Scientific reports (02-09-2016)
    “…In the interfacial superconductor Bi 2 Te 3 /Fe 1+y Te, two dimensional superconductivity occurs in direct vicinity to the surface state of a topological…”
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    Journal Article
  2. 2

    ZnSe nanowires epitaxially grown on GaP(111) substrates by molecular-beam epitaxy by Chan, Y. F., Duan, X. F., Chan, S. K., Sou, I. K., Zhang, X. X., Wang, N.

    Published in Applied physics letters (29-09-2003)
    “…We report molecular-beam epitaxy growth of single crystalline ZnSe nanowires with uniform diameters (∼10 nm) on GaP(111) substrates. The growth process was…”
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    Journal Article
  3. 3

    Growth temperature dependence of MBE-grown ZnSe Nanowires by Chan, S.K., Cai, Y., Wang, N., Sou, I.K.

    Published in Journal of crystal growth (01-04-2007)
    “…The growth orientation and crystalline perfection of ZnSe nanowires (NWs) grown by the combination of molecular beam epitaxy (MBE) and vapor–liquid–solid (VLS)…”
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    Journal Article Conference Proceeding
  4. 4

    MBE-grown Au-island-catalyzed ZnSe nanowires by Chan, S.K., Cai, Y., Sou, I.K., Wang, N.

    Published in Journal of crystal growth (01-05-2005)
    “…ZnSe nano-wires (NWs) were fabricated on GaAs(1 1 1) and GaAs(1 1 0) substrates by the molecular beam epitaxy (MBE) technique via the vapor–liquid–solid (VLS)…”
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    Journal Article Conference Proceeding
  5. 5

    Growth temperature dependence of the structural and photoluminescence properties of MBE-grown ZnS nanowires by Lok, S.K., Wang, G., Cai, Y., Wang, N., Zhong, Y.C., Wong, K.S., Sou, I.K.

    Published in Journal of crystal growth (15-04-2009)
    “…ZnS nanowires (NWs) were fabricated on sapphire by molecular beam epitaxy using Au-droplet catalyst. The NWs grown at 530 and 480°C are in cubic phase while…”
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    Journal Article
  6. 6

    Observation of negative differential resistance from a Schottky-barrier structure embedded with Fe quantum dots by Lok, S.K., Li, B.K., Wang, J.N., Wong, G.K.L., Sou, I.K.

    Published in Journal of crystal growth (15-03-2009)
    “…A Au/ZnS/Fe-quantum dots (QDs)/ZnS/n +-GaAs(1 0 0) Schottky-barrier structure containing five layers of spherical Fe QDs with diameter around 3 nm was…”
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    Journal Article Conference Proceeding
  7. 7

    MBE-grown Fe nanowires on a ZnS(1 0 0) surface by Lok, S.K., Chan, S.K., Wong, G.K.L., Sou, I.K.

    Published in Journal of crystal growth (15-03-2009)
    “…Two types of self-assembled Fe nanowires (NWs) were grown by molecular beam epitaxy on ZnS(1 0 0) surface under high growth/annealing temperature. The type-A…”
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    Journal Article Conference Proceeding
  8. 8

    MBE-Grown II–VI and Related Nanostructures by Sou, I. K., Lok, S.K., Wang, G., Wang, N., Wong, G.K.L.

    Published in Journal of electronic materials (01-07-2010)
    “…Nanostructures of II–VI semiconductor materials could potentially offer novel and superior physical (in particular, optoelectronic) properties with respect to…”
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    Journal Article Conference Proceeding
  9. 9

    MBE-Grown Cubic ZnS Nanowires by Chan, S.K., Lok, S.K., Wang, G., Cai, Y., Wang, N., Wong, K.S., Sou, I.K.

    Published in Journal of electronic materials (01-09-2008)
    “…Ultrathin ZnS nanowires (NWs) were grown on a sapphire (0001) substrate at 430°C by the molecular-beam epitaxy (MBE) technique using self-assembled Au droplets…”
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    Journal Article Conference Proceeding
  10. 10

    Fe-layer-induced aligned 1D nanostructure on ZnSe surface by Wang, G., Lok, S.K., Chan, S.K., Wang, C., Wong, G.K.L., Sou, I.K.

    Published in Journal of crystal growth (15-03-2009)
    “…A novel approach to fabricating a highly aligned one-dimensional (1D) surface nanostructure on the surface of Fe/ZnSe bilayers grown on GaAs (0 0 1) substrates…”
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    Journal Article Conference Proceeding
  11. 11

    MBE-Grown Fe Magnetic Quantum Dots in ZnS Matrix by Lok, S.K., You, B., Zhang, B., Zhang, X.X., Sou, I.K., Wong, G.K.L.

    Published in IEEE transactions on magnetics (01-06-2007)
    “…A multilayer magnetic quantum dot sample containing 5 layers of Fe quantum dots (QDs) embedded in six layers of ZnS spacer was grown by molecular beam epitaxy…”
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    Journal Article Conference Proceeding
  12. 12

    Nanotrenches Induced by Catalyst Particles on ZnSe Surfaces by Chan, S.K., Lok, S.K., Wang, G., Cai, Y., Wang, N., Sou, I.K.

    Published in Journal of electronic materials (01-09-2008)
    “…Nanotrenches are induced by thermal annealing Au droplets on ZnSe surfaces. High-resolution scanning electron microscopy studies of the nanotrench structures…”
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    Journal Article Conference Proceeding
  13. 13

    Thermal diffusion studies of MBE-grown ZnSe/Fe/ZnSe and ZnS/Fe/ZnS structures by Sou, I.K., Wang, C., Chan, S.K., Wong, G.K.L.

    Published in Journal of crystal growth (01-05-2005)
    “…This study focused on the investigation of the thermal stability of Fe on ZnSe and ZnS matrix using secondary ion mass spectroscopy (SIMS). Sandwiched three…”
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    Journal Article Conference Proceeding
  14. 14

    Efficient second harmonic generation from large band gap II-VI semiconductor photonic crystal by Yang, H., Xie, P., Chan, S. K., Zhang, Z. Q., Sou, I. K., Wong, G. K. L., Wong, K. S.

    Published in Applied physics letters (26-09-2005)
    “…Dramatic enhancement of second harmonic generation (SHG) near the photonic band edge was observed in a one-dimensional Zn Se ∕ Zn Mg S semiconductor photonic…”
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    Journal Article
  15. 15

    Simultaneous enhancement of the second- and third-harmonic generations in one-dimensional semiconductor photonic crystals by Hui Yang, Ping Xie, Chan, S.K., Weixin Lu, Zhao-Qing Zhang, Sou, I.K., Wong, G.K.L., Wong, K.S.

    Published in IEEE journal of quantum electronics (01-04-2006)
    “…We report on observation of simultaneous strong enhancements of second-harmonic generation (SHG) and third-harmonic generation (THG) in visible spectra region…”
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    Journal Article
  16. 16

    Influence of Mg content on molecular-beam-epitaxy-grown ZnMgS ultraviolet photodetectors by Lu, L.W., Sou, I.K., Ge, W.K.

    Published in Journal of crystal growth (15-04-2004)
    “…Zn 1− x Mg x S-based Schottky barrier ultraviolet (UV) photodetectors were fabricated using the molecular-beam-epitaxy (MBE) technique. The influence of Mg…”
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    Journal Article
  17. 17

    Molecular beam epitaxy-grown ZnSe nanowires by CHAN, S. K, LIU, N, CAI, Y, WANG, N, WONG, G. K. L, SOU, I. K

    Published in Journal of electronic materials (01-06-2006)
    “…Molecular beam epitaxy (MBE) via the vapor-liquid-solid (VLS) reaction was used to grow ZnSe nanowires (NWs) on (111), (100), and (110) oriented GaAs…”
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    Conference Proceeding Journal Article
  18. 18

    Detectivity studies of SMD-packaged ZnSSe and ZnMgS UV detectors by MAK, L. S, CHAN, S. K, WONG, G. K. L, SOU, I. K

    Published in Journal of electronic materials (01-06-2006)
    “…The 1/f noise and shot noise studies were carried out on molecular beam epitaxy (MBE)-grown ZnS^sub 0.85^Se^sub 0.15^, and Zn^sub 0.43^Mg^sub 0.57^S…”
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    Conference Proceeding Journal Article
  19. 19

    Spontaneous vortex dynamics in superconducting FeTe thin films by He, H.T., Wang, G., Liu, H.C., Zhang, T., Law, K.T., Sou, I.K., Wang, J.N.

    Published in Solid state communications (01-10-2014)
    “…Superconductivity is realized in Fe1+xTe (x=0.1–0.2) thin films grown on topological insulator Bi2Te3 by molecular beam epitaxy. A thorough analysis of the…”
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    Journal Article
  20. 20

    Molecular beam epitaxy-grown wurtzite MgS thin films for solar-blind ultra-violet detection by Lai, Y. H., He, Q. L., Cheung, W. Y., Lok, S. K., Wong, K. S., Ho, S. K., Tam, K. W., Sou, I. K.

    Published in Applied physics letters (29-04-2013)
    “…Molecular beam epitaxy grown MgS on GaAs(111)B substrate was resulted in wurtzite phase, as demonstrated by detailed structural characterizations…”
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    Journal Article