Luminescence Characteristics and Energy Transfer of Tm3+-Doped Calcium Fluoroborate Glasses for Fiber Amplifiers

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Abstract

The conventional melt quenching method was employed to fabricate calcium fluoroborate glasses doped with Tm2O3 (CFBTm). Optical absorption and photoluminescence spectra were recorded in the UV, Vis, and NIR wavelength ranges. Judd-Ofelt (J-O) and free-ion parameters were computed based on the absorption band intensities and energy level positions. Utilizing the J-O parameters, various radiative parameters were determined for distinct excited states of Tm3+ ions in CFB glasses. Stimulated emission cross-sections (se) and effective bandwidths (Dleff) were calculated for the observed emission bands. The increase in Tm2O3 concentration resulted in an augmentation of emission peak intensities in the visible range, followed by a decline at higher concentrations. The quenching of emission intensities was attributed to energy transfer through cross-relaxation mechanisms. The NIR emission spectrum, excited by an 808 nm laser diode (LD), exhibited a peak at 1.47 mm corresponding to the 3H4-3F4 transition, with the intensity of the NIR emission peak increasing with the concentration of Tm2O3. Furthermore, Beer-Lambert and McCumber theories were applied to assess the absorption and emission cross-sections for the prominent 3F4–3H6 transition at the 1.82 mm emission wavelength.
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光纤放大器用掺Tm3+氟硼酸钙玻璃的发光特性和能量转移
采用传统的熔体淬火法制备了掺杂Tm2O3 (CFBTm)的氟硼酸钙玻璃。在紫外、可见和近红外波长范围内记录了光吸收和光致发光光谱。根据吸收带强度和能级位置计算Judd-Ofelt (J-O)和自由离子参数。利用J-O参数,确定了CFB玻璃中Tm3+离子不同激发态的辐射参数。对观测到的发射波段计算了受激发射截面(se)和有效带宽(Dleff)。随着Tm2O3浓度的增加,在可见光范围内的发射峰强度增大,在较高浓度下,发射峰强度减小。发射强度的猝灭是由于能量通过交叉弛豫机制传递所致。在808 nm激光二极管(LD)的激发下,近红外发射光谱在1.47 mm处有一个峰,对应于3H4-3F4的转变,且近红外发射峰的强度随着Tm2O3浓度的增加而增加。此外,利用Beer-Lambert和McCumber理论计算了在1.82 mm发射波长处3F4-3H6显著跃迁的吸收和发射截面。
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