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ZnO/MgO distributed Bragg reflectors

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
ZnO/MgO distributed Bragg reflectors (DBRs) are grown by pulsed laser deposition. DBR samples grown at the same temperature and the same pressure show obvious reflections in transmission spectra. If there is a standing wave in the ZnO layers, it is evident that the full width at half maximum of the ZnO peak in photoluminescence spectra could be decreased when the sample reflects more photons whose wavelength is about 380 nm.
Czasopismo
Rocznik
Strony
169--174
Opis fizyczny
Bibliogr. 10 poz.
Twórcy
autor
autor
autor
autor
autor
autor
  • Key Laboratory for Materials Modification by Laser, Ion, Electron Beams, Department of Physics, and The Key Laboratory For Micro/Nano Technology and System of Liaoning Province,
Bibliografia
  • [1] LEI D.Y., ONG H.C., Enhanced forward emission from ZnO via surface plasmons, Applied Physics Letters 91(21), 2007, p. 211107.
  • [2] KIM H.S., PEARTON S.J., NORTON D.P., REN F., Behavior of rapid thermal annealed ZnO:P films grown by pulsed laser deposition, Journal of Applied Physics 102(10), 2007, p. 104904.
  • [3] HAIBO ZENG, ZHIGANG LI, WEIPING CAI, PEISHENG LIU, Strong localization effect in temperature dependence of violet-blue emission from ZnO nanoshells, Journal of Applied Physics 102(10), 2007, p. 104307.
  • [4] EIJT S.W.H., DE ROODE J., SCHUT H., KOOI B.J., DE HOSSON J.TH.M., Formation and stability of rocksalt ZnO nanocrystals in MgO, Applied Physics Letters 91(20), 2007, p. 201906.
  • [5] HUIJUAN ZHOU, WISSINGER M., FALLERT J., HAUSCHILD R., STELZL F., KLINGSHIRN C., KALT H., Ordered, uniform-sized ZnO nanolaser arrays, Applied Physics Letters 91(18), 2007, p. 181112.
  • [6] DATTA A., CHOUDHURI T.K., BASU S., Deposition and characterization of zinc oxide thin films for hydrogen sensor devices, Materials Science and Engineering B 14(1), 1992, pp. 31–35.
  • [7] AOKI T., HATANAKA Y., LOOK D.C., ZnO diode fabricated by excimer-laser doping, Applied Physics Letters 76(22), 2000, p. 3257.
  • [8] RAJAT SHARMA, YONG-SEOK CHOI, CHIOU-FU WANG, AURÉLIEN DAVID, CLAUDE WEISBUCH, SHUJI NAKAMURA, EVELYN L. HU, Gallium-nitride-based microcavity light-emitting diodes with air-gap distributed Bragg reflectors, Applied Physics Letters 91(21), 2007, p. 211108.
  • [9] SCHAADT D.M., BRANDT O., SANDIP GHOSH, FLISSIKOWSKI T., JAHN U., GRAHN H.T., Polarization-dependent beam switch based on an M-plane GaN/AlN distributed Bragg reflector, Applied Physics Letters 90(23), 2007, p. 231117.
  • [10] TENG J.H., DONG J.R., CHUA S.J., FOO B.S., LAI M.Y., WANG Y.J., ANG S.S., YIN R., Distributed Bragg reflector laser using buried SiO2 grating and self-aligned band gap tuning, Applied Physics Letters 90(17), 2007, p. 171107.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0011-0016
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