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Superbroadband near-IR photoluminescence from Pr³⁺-doped fluorotellurite glasses

机译:掺Pr³⁺的氟碲酸盐玻璃的超宽带近红外光致发光

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摘要

Praseodymium(Pr³⁺)-doped fluorotellurite glasses were synthesized and broadband photoluminescence (PL) covering a wavelength range from 1.30 to 1.67 μm was observed under both 488 and 590 nm wavelength excitations. The broadband PL emission is mainly due to the radiative transition from the manifolds Pr³⁺: ¹D₂to ¹G₄. The PL line-shape, band width, and lifetime were modified by the Pr³⁺ dopant concentration, and a quantum efficiency as high as 73.7% was achieved with Pr³⁺ dopant in a low concentration of 0.05 mol%. The good spectroscopic properties were also predicted by the Judd-Ofelt analysis, which indicates a stronger asymmetry and covalent bonding between the Pr³⁺ sites and the matrix lifgand field. The large stimulated emission cross-section, long measured lifetime, and broad emission bandwidth confirm the potential of the Pr³⁺- singly doped fluorotellurite glass as broadband luminescence sources for the broadband near-infrared optical amplifications and tunable lasers.
机译:合成了掺((Pr 3+)的氟碲酸盐玻璃,并在488和590 nm波长激发下观察到了覆盖1.30至1.67μm波长范围的宽带光致发​​光(PL)。宽带PL的发射主要是由于从歧管Pr³3:“ D2”到“ G1”的辐射跃迁。通过Pr 3+掺杂剂浓度改变了PL的线形,带宽和寿命,用0.05 mol%的低浓度Pr 3+掺杂剂实现了高达73.7%的量子效率。 Judd-Ofelt分析还预测了良好的光谱性质,这表明Pr³⁺位点与基质配体场之间具有更强的不对称性和共价键。较大的受激发射横截面,较长的测量寿命和较宽的发射带宽,证实了掺Pr的氟碲酸盐玻璃作为宽带近红外光放大和可调激光器的宽带发光源的潜力。

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