Vacuum ultraviolet optical properties of a micro-pulling-down-method grown Nd^3+:(La_09,Ba_01)F_29

Vacuum ultraviolet optical properties of a micro-pulling-down-method grown Nd^3+:(La_09,Ba_01)F_29
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微下拉法生长Nd^3:(La_09,Ba_01)F_29的真空紫外光学性质

DOI:
10.1364/josab.25.000b27
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发表时间:
2008
影响因子:
1.9
通讯作者:
F. Saito
F. Saito
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
M. Cadatal;Y. Furukawa;Y. Seo;S. Ono;E. Estacio;H. Murakami;Y. Fujimoto;N. Sarukura;M. Nakatsuka;K. Fukuda;R. Simura;T. Suyama;A. Yoshikawa;F. Saito

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用微下拉方法高效地生长了Nd3+:(La1−x,Bax)F3−x(x=0.1)。对其光学性质的表征表明,它在真空紫外区是透明的,吸收边在180 nm左右。通过真空紫外条纹相机和光谱仪的组合测量,它的荧光中心在175 nm,带宽为12 nm,寿命为6.1 ns。建议将其作为真空紫外闪烁体和潜在的激光材料。
Nd3+:(La1−x,Bax)F3−x(x=0.1) is efficiently grown by the micro-pulling-down method. Characterization of its optical properties reveals that it is transparent in the vacuum ultraviolet region with an absorption edge at around 180 nm. It has fluorescence centered at 175 nm with a bandwidth of 12 nm and a lifetime of 6.1 ns as measured by a vacuum ultraviolet streak camera and spectrometer combination. It is proposed to be suitable as a vacuum ultraviolet scintillator and a potential laser material.
B.M.Epelbaum:“钨酸铅晶体的微下拉生长研究:不一致熔体汽化的方面”J.Crystal Growth。
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