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用于光纤集成磁光的重掺Tb(3+)的GeO2-B2O3-Al2O3-Ga2O3玻璃中的法拉第旋转和光致发光

Faraday rotation and photoluminescence in heavily Tb(3+)-doped GeO2-B2O3-Al2O3-Ga2O3 glasses for fiber-integrated magneto-optics.

作者信息

Gao Guojun, Winterstein-Beckmann Anja, Surzhenko Oleksii, Dubs Carsten, Dellith Jan, Schmidt Markus A, Wondraczek Lothar

机构信息

Otto Schott Institute of Materials Research, University of Jena, 07743 Jena, Germany.

Innovent e.V., 07745 Jena, Germany.

出版信息

Sci Rep. 2015 Mar 10;5:8942. doi: 10.1038/srep08942.

Abstract

We report on the magneto-optical (MO) properties of heavily Tb(3+)-doped GeO2-B2O3-Al2O3-Ga2O3 glasses towards fiber-integrated paramagnetic MO devices. For a Tb(3+) ion concentration of up to 9.7 × 10(21) cm(-3), the reported glass exhibits an absolute negative Faraday rotation of ~120 rad/T/m at 632.8 nm. The optimum spectral ratio between Verdet constant and light transmittance over the spectral window of 400-1500 nm is found for a Tb(3+) concentration of ~6.5 × 10(21) cm(-3). For this glass, the crystallization stability, expressed as the difference between glass transition temperature and onset temperature of melt crystallization exceeds 100 K, which is a prerequisite for fiber drawing. In addition, a high activation energy of crystallization is achieved at this composition. Optical absorption occurs in the NUV and blue spectral region, accompanied by Tb(3+) photoluminescence. In the heavily doped materials, a UV/blue-to-green photo-conversion gain of ~43% is achieved. The lifetime of photoluminescence is ~2.2 ms at a stimulated emission cross-section σem of ~1.1 × 10(-21) cm(2) for ~ 5.0 × 10(21) cm(-3) Tb(3+). This results in an optical gain parameter σem*τ of ~2.5 × 10(-24) cm(2)s, what could be of interest for implementation of a Tb(3+) fiber laser.

摘要

我们报道了高掺杂Tb(3+)的GeO2-B2O3-Al2O3-Ga2O3玻璃用于光纤集成顺磁磁光器件的磁光(MO)特性。对于高达9.7×10(21) cm(-3)的Tb(3+)离子浓度,所报道的玻璃在632.8 nm处表现出约120 rad/T/m的绝对负法拉第旋转。在400 - 1500 nm光谱窗口内,发现当Tb(3+)浓度约为6.5×10(21) cm(-3)时,Verdet常数与透光率之间具有最佳光谱比。对于这种玻璃,以玻璃转变温度与熔体结晶起始温度之差表示的结晶稳定性超过100 K,这是光纤拉丝的前提条件。此外,在此组成下实现了较高的结晶活化能。光吸收发生在近紫外和蓝光光谱区域,并伴有Tb(3+)光致发光。在重掺杂材料中,实现了约43%的紫外/蓝光到绿光的光转换增益。对于约5.0×10(21) cm(-3)的Tb(3+),在受激发射截面σem约为1.1×10(-21) cm(2)时,光致发光寿命约为2.2 ms。这导致光增益参数σem*τ约为2.5×10(-24) cm(2)s,这对于实现Tb(3+)光纤激光器可能具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2310/4354094/ae73eccb4a5e/srep08942-f1.jpg

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