DTIC ADA209818: Energy Transfer Effects in Beta pdf

DTIC ADA209818: Energy Transfer Effects in Beta_bookcover

DTIC ADA209818: Energy Transfer Effects in Beta

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Energy transfer between cerium (+3) and neodynium (+3) exchanged into beta -alumina is observed. Synthesis of the crystals was achieved by ion exchange. Both radiative and nonradiative transfer mechanisms are evident. The nonradiative transfer is attributed to electrostatic dipole-quadrupole interactions where the highest measured transfer efficiency was 40

  • Creator/s: Defense Technical Information Center
  • Date: 6/15/1989
  • Year: 1989
  • Book Topics/Themes: DTIC Archive, Momoda, L A, CALIFORNIA UNIV LOS ANGELES DEPT OF MATERIALS SCIENCE AND ENGINEERING, *ENERGY TRANSFER, *NEODYMIUM, *CERIUM, *ALUMINUM OXIDES, *ION EXCHANGE, ELECTROSTATICS, RADIATIVE TRANSFER, EFFICIENCY, SYNTHESIS(CHEMISTRY), CATIONS, CRYSTALS

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