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Thermal Stability and Judd-Ofelt Analysis of Optical Properties of Sm~(3+)-Doped Sodium Tellurite Glasses

机译:SM〜(3 +)掺杂碲酸钠玻璃光学性质的热稳定性和判断性分析

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Series of glasses based on (70-x) TeO_2 - 20Na20 - xSm_2O_3 (x=0, 0.3, 0.6, 1, 1.2, 1.5 mol%) have been prepared using melt-quenching technique. The nature of the glass has been confirmed using X-ray diffraction; it is found that the glass samples are amorphous in nature. The thermal stability of the glass has been determined by means of Differential Thermal Analysis (DTA). From the DTA curve, the glass transition temperature (T_g), crystallization temperature (T_c) and melting temperature (T_m) have been identified and thermal stability is also calculated. The absorption properties of these samples are obtained by using UV-Visible-NIR spectrometer, the recorded absorption spectra exhibit nine absorption transition bands peaks corresponding to the transitions from ground level ~0H_(5/2→)~6P3/2, ~4I_(11/2), ~6F_(11/2), ~6F9/2, ~6F_(7/2), ~6F_(5/2), ~6F_(3/2), ~6H_(15/2) and ~6F_(1/2). The emission characteristic of this glass is characterized using Photoluminescence (PL) spectroscopy at excited wavelength 404 nm, the emission spectra consisted of four emission bands at 561.95 nm, 598.69 nm, 643.77 nm and 704.56 nm which were assigned as a transition ~4G_(5/2→)~6H_(5/2), ~6H7/2, ~6H_(9/2) and ~6H_(11/2) respectively. From f-f intensity model the experimental oscillator strengths, f_(exp) and theoretical oscillator strength f_(cal) were calculated. Using Judd-Ofelt theory and fit process of least square, the phenomenological intensity parameters ?λ (λ=2,4,6) were obtained, In order to evaluate potential applications of Sm~(3+) ions in telluride glasses, the spectroscopic parameters: transition probability A_R, branching ratio B_r, radiative life time τ_r, emission pick cross section σλ for each band were calculated. The comparative studies with other Sm~(3+) doped different glasses showed that present glasses could be a potential candidate for lasers.
机译:使用熔融淬火技术制备了基于(70-X)TEO_2 - 20NA20 - XSM_2O_3(X = 0,0.3,0.6,1,1,1.2,1.5mol%)的玻璃系列。使用X射线衍射确认了玻璃的性质;发现玻璃样品本质上是无定形的。通过差分热分析(DTA)确定了玻璃的热稳定性。从DTA曲线,已经鉴定了玻璃化转变温度(T_G),结晶温度(T_C)和熔化温度(T_M),并计算出热稳定性。通过使用UV可见光率光谱仪获得这些样品的吸收性能,记录的吸收光谱表现出与从地面〜0h_(5/2→)〜6p3 / 2的过渡相对应的九个吸收转变带峰值峰值(5/2),〜4i_( 11/2),〜6f_(11/2),〜6f9 / 2,〜6f_(7/2),〜6f_(5/2),〜6f_(3/2),〜6h_(15/2)和〜6f_(1/2)。该玻璃的发射特性在激发波长404nm处使用光致发光(PL)光谱,发射光谱由561.95nm,598.69nm,643.77nm和704.56nm的四个发射带组成,其被分配为转变〜4g_(5 / 2→)〜6H_(5/2),〜6H7 / 2,〜6H_(9/2)和〜6H_(11/2)。从F-F强度模型,计算实验振荡器强度,F_(EXP)和理论振荡器强度F_(CAL)。使用judd-elt理论和拟合过程最小二乘,获得现象学强度参数?λ(λ= 2,4,6),以评估Sm〜(3+)离子在碲化玻璃中的潜在应用,光谱参数:转换概率A_R,分支比B_R,辐射寿命时间τ_R,每个频带的发射拾取截面σλ。与其他SM〜(3+)的比较研究掺杂不同的眼镜表明,目前的眼镜可能是激光器的潜在候选者。

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