• Photonics Research
  • Vol. 6, Issue 2, 144 (2018)
Ye Zheng1, Yunhua Yao1, Lianzhong Deng1、*, Wenjing Cheng2, Jianping Li1, Tianqing Jia1, Jianrong Qiu3, Zhenrong Sun1, and Shian Zhang1、4、5
Author Affiliations
  • 1State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai 200062, China
  • 2School of Electronic & Electrical Engineering, Shangqiu Normal University, Shangqiu 476000, China
  • 3State Key Laboratory of Silicon Materials, Zhejiang University, Hangzhou 310027, China
  • 4Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
  • 5e-mail: sazhang@phy.ecnu.edu.cn
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    DOI: 10.1364/PRJ.6.000144 Cite this Article Set citation alerts
    Ye Zheng, Yunhua Yao, Lianzhong Deng, Wenjing Cheng, Jianping Li, Tianqing Jia, Jianrong Qiu, Zhenrong Sun, Shian Zhang. Valence state manipulation of Sm3+ ions via a phase-shaped femtosecond laser field[J]. Photonics Research, 2018, 6(2): 144 Copy Citation Text show less

    Abstract

    The ability to manipulate the valence state conversion of rare-earth ions is crucial for their applications in color displays, optoelectronic devices, laser sources, and optical memory. The conventional femtosecond laser pulse has been shown to be a well-established tool for realizing the valence state conversion of rare-earth ions, although the valence state conversion efficiency is relatively low. Here, we first propose a femtosecond laser pulse shaping technique for improving the valence state conversion efficiency of rare-earth ions. Our experimental results demonstrate that the photoreduction efficiency from Sm3+ to Sm2+ in Sm3+-doped sodium aluminoborate glass using a π phase step modulation can be comparable to that using a transform-limited femtosecond laser field, while the peak laser intensity is decreased by about 63%, which is very beneficial for improving the valence state conversion efficiency under the laser-induced damage threshold of the glass sample. Furthermore, we also theoretically develop a (2+1) resonance-mediated three-photon absorption model to explain the modulation of the photoreduction efficiency from Sm3+ to Sm2+ under the π-shaped femtosecond laser field.
    P(2+1)+dωfA(ωf)|A(2+1)(on-res)+A(2+1)(near-res)|2,(1)

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    A(2+1)(on-res)iπ+dωiA(ωi)A(2)(ωi)E(ωfωi)(2)

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    A(2+1)(near-res)+dΔ1ΔA(2)(ωiΔ)E(ωfωi+Δ),(3)

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    A(2)(Ω)=+dωE(ω)E(Ωω),(4)

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    Ye Zheng, Yunhua Yao, Lianzhong Deng, Wenjing Cheng, Jianping Li, Tianqing Jia, Jianrong Qiu, Zhenrong Sun, Shian Zhang. Valence state manipulation of Sm3+ ions via a phase-shaped femtosecond laser field[J]. Photonics Research, 2018, 6(2): 144
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