K2YF5:Tb3+ single crystal: An in-depth study of spectroscopic properties, energy transfer and quantum cutting
Tb3+ doped K2YF5 single crystal was synthesized by the hydrothermal technique. Structure of material was analyzed by X-ray diffraction pattern and Raman spectra. The optical properties were studied through absorption, luminescence spectra and decay curves. Absorption spectra were used to calculate t...
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Published in | Optical materials Vol. 106; p. 109939 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.08.2020
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Abstract | Tb3+ doped K2YF5 single crystal was synthesized by the hydrothermal technique. Structure of material was analyzed by X-ray diffraction pattern and Raman spectra. The optical properties were studied through absorption, luminescence spectra and decay curves. Absorption spectra were used to calculate the bonding parameter (δ) and Judd-Ofelt intensity parameters (Ω2,4,6). The JO parameters and emission spectra have been used to estimate radiative properties such as transition probability (AR), branching ratios (βcal, βexp), lifetime (τcal) stimulated emission cross-sections (σλp, 10−22 cm2) and optical gain (σλp × τcal, 10−25 cm2 s) for 5D3→7FJ and 5D4→7FJ (J = 0 ÷ 6) transitions. The dominant interaction mechanism and energy transfer parameters between Tb3+ ions have been found by fitting the decay curves of 5D3 level to the Inokuti-Hirayama model. In addition, the quantum cutting process based on energy transfer between Tb3+ ions has also been studied for K2YF5:Tb3+ crystal.
•Quantum cutting luminescence in K2YF2:Tb3+ occurs under excitation at 245 nm.•Spectroscopic properties of K2YF2:Tb3+ crystal is analyzed by Judd-Ofelt theory.•Luminescence from 5D4 level is enhanced with the increase of Tb3+ concentration.•The 5D4.→7F5 transition has application ability for laser and optical amplifier.•Energy transfer between Tb3+ ions is studied through Inokuti-Hirayama model. |
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AbstractList | Tb3+ doped K2YF5 single crystal was synthesized by the hydrothermal technique. Structure of material was analyzed by X-ray diffraction pattern and Raman spectra. The optical properties were studied through absorption, luminescence spectra and decay curves. Absorption spectra were used to calculate the bonding parameter (δ) and Judd-Ofelt intensity parameters (Ω2,4,6). The JO parameters and emission spectra have been used to estimate radiative properties such as transition probability (AR), branching ratios (βcal, βexp), lifetime (τcal) stimulated emission cross-sections (σλp, 10−22 cm2) and optical gain (σλp × τcal, 10−25 cm2 s) for 5D3→7FJ and 5D4→7FJ (J = 0 ÷ 6) transitions. The dominant interaction mechanism and energy transfer parameters between Tb3+ ions have been found by fitting the decay curves of 5D3 level to the Inokuti-Hirayama model. In addition, the quantum cutting process based on energy transfer between Tb3+ ions has also been studied for K2YF5:Tb3+ crystal.
•Quantum cutting luminescence in K2YF2:Tb3+ occurs under excitation at 245 nm.•Spectroscopic properties of K2YF2:Tb3+ crystal is analyzed by Judd-Ofelt theory.•Luminescence from 5D4 level is enhanced with the increase of Tb3+ concentration.•The 5D4.→7F5 transition has application ability for laser and optical amplifier.•Energy transfer between Tb3+ ions is studied through Inokuti-Hirayama model. |
ArticleNumber | 109939 |
Author | Thanh, Luong Duy Tuyen, Vu Phi Van Do, Phan Quang, Vu Xuan Ca, Nguyen Xuan Van Hao, Nguyen Van Nghia, Nguyen Khaidukov, Nicholas M. |
Author_xml | – sequence: 1 givenname: Vu Phi surname: Tuyen fullname: Tuyen, Vu Phi organization: Institute of Research and Development, Duy Tan University, Da Nang, 550000, Vietnam – sequence: 2 givenname: Vu Xuan surname: Quang fullname: Quang, Vu Xuan organization: Institute of Research and Development, Duy Tan University, Da Nang, 550000, Vietnam – sequence: 3 givenname: Nicholas M. surname: Khaidukov fullname: Khaidukov, Nicholas M. organization: Kurnakov Institute of General and Inorganic Chemistry, Moscow, 119991, Russia – sequence: 4 givenname: Luong Duy surname: Thanh fullname: Thanh, Luong Duy organization: Thuyloi University, 175 Tay Son, Dong Da, Hanoi, Vietnam – sequence: 5 givenname: Nguyen Xuan surname: Ca fullname: Ca, Nguyen Xuan organization: Department of Physics and Technology, TNU-University of Sciences, Vietnam – sequence: 6 givenname: Nguyen surname: Van Hao fullname: Van Hao, Nguyen organization: Department of Physics and Technology, TNU-University of Sciences, Vietnam – sequence: 7 givenname: Nguyen surname: Van Nghia fullname: Van Nghia, Nguyen organization: Thuyloi University, 175 Tay Son, Dong Da, Hanoi, Vietnam – sequence: 8 givenname: Phan surname: Van Do fullname: Van Do, Phan email: phanvando@tlu.edu.vn organization: Thuyloi University, 175 Tay Son, Dong Da, Hanoi, Vietnam |
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Title | K2YF5:Tb3+ single crystal: An in-depth study of spectroscopic properties, energy transfer and quantum cutting |
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