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Quantitative characterization on multichannel transition emissions originating from 3P0 and 1D2 levels of Pr3+ in fluorotellurite glasses

  • Y. Y. Du
  • , L. F. Shen
  • , B. J. Chen
  • , E. Y.B. Pun
  • , H. Lin*
  • *此作品的通讯作者
  • Dalian Polytechnic University
  • City University of Hong Kong

科研成果: 期刊稿件文章同行评审

摘要

Multichannel transition emissions in Pr3+-doped fluorotellurite (4BaF2-4AlF3-16BaO-6La2O3-70TeO 2, BABLT) glasses have been quantitatively characterized. Broadband ∼1.48 μm near-infrared (NIR) emission due to 1D21G4 transition covering a 1.28-1.68 μm wavelength region possesses a full-width at half-maximum of 120 nm, along with the spontaneous emission probability (Aij) and maximum stimulated emission cross-section (σem) are calculated to be 693 s -1 and 8.97 × 10-21 cm2, respectively. Intense visible fluorescence originating from 3P0 and 1D2 levels has been observed and the radiant flux for the visible fluorescence of Pr3+ is solved to be 299 μW under commercial blue LED excitation. Quantitative characterization reveals that Pr3+-doped BABLT glasses exhibit a quantum yield (QY) as high as 14.9%, which is 3.1% higher than that in Pr3+-doped heavy metal germanium tellurite glasses. High QY and broadband ∼1.48 μm emission illustrate great advantages of Pr3+-doped BABLT glasses as fibre luminescence sources in photodynamic therapy treatment and gain media for tunable lasers and NIR optical amplifiers.

源语言英语
期刊论文编号505107
期刊Journal of Physics D: Applied Physics
46
50
DOI
出版状态已出版 - 18 12月 2013
已对外发布

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