Investigation of Laser Material Potential in Lead Tungsten Tellurite Glasses

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Abstract

Lead tungsten tellurite (LTT) glasses, incorporating varying concentrations of Dy3+ions, were synthesized and subjected to comprehensive characterization encompassing optical absorption, photoluminescence, and decay measurements. X-ray diffraction (XRD) analysis affirmed the amorphous nature of the LTT host. Employing the Judd–Ofelt (J–O) theory, three phenomenological intensity parameters Ωλ(λ = 2, 4, 6) were derived from absorption spectral intensities. The heightened sensitivity of the 6H15/2→6F11/2 transition, determined by the magnitude of the Ω2 parameter, was explored. Radiative properties, including spontaneous transition probabilities (AR), fluorescence branching ratios (βR), and radiative lifetimes (τR), were determined using the J–O intensity parameters. The impact of Dy3+ion concen-tration on the emission intensities of 4F9/2→6HJﹶ (Jﹶ = 15/2, 13/2, 11/2, and 9/2) transitions was also investigated and reported.
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铅钨碲玻璃中激光材料电位的研究
采用不同浓度的Dy3+离子合成了铅钨碲酸盐(LTT)玻璃,并对其进行了包括光学吸收、光致发光和衰减测量在内的综合表征。x射线衍射(XRD)分析证实了LTT主体的无定形性质。利用Judd-Ofelt (J-O)理论,从吸收光谱强度推导出三个现象学强度参数Ωλ(λ = 2,4,6)。研究了由Ω2参数的大小决定的6H15/2→6F11/2跃迁的高灵敏度。利用J-O强度参数确定辐射性质,包括自发跃迁概率(AR)、荧光分支比(βR)和辐射寿命(τR)。还研究并报道了Dy3+离子浓度对4F9/2→6HJﹶ (Jﹶ = 15/ 2,13 / 2,11 /2和9/2)跃迁发射强度的影响。
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