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This paper is joint with [27]. The authors prove in this article the existence and reveal its structure of uniform attractor for a two-dimensional nonautonomous incompressible non-Newtonian fluid with a new class of external forces. 相似文献
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采用温梯法生长了Ce:YAG晶体和真空烧结法制备了Ce:YAG透明陶瓷,并对晶体和透明陶瓷的光学和闪烁性能进行了对比研究.Ce:YAG晶体和陶瓷都具有位于230,340和460 nm波段的Ce3+离子的特征吸收带和540 nm附近的发射峰,但Ce:YAG晶体同时存在296和370 nm的色心吸收,其发射峰位于398 nm,而透明陶瓷中不存在.Ce:YAG晶体和陶瓷的X射线荧光中均存在520 nm附近的Ce3+离子发射,但晶体中还存在由反格位缺陷引起的300 nm
关键词:
Ce:YAG
闪烁晶体
透明陶瓷 相似文献
3.
以高纯α-Al2O3和石墨为原料,采用温梯法生长了α-Al2O3:C晶体,使用Ris TL/OSL-DA-15型热释光和光释光仪研究了其热释光和光释光特性.α-Al2O3:C晶体在462 K附近有单一热释光峰,发射波长位于410 nm.随着辐照剂量的增加,热释光强度逐渐增强,462 K的热释光特征峰位置保持不变.α-Al2O3:C晶体的光释光衰减曲线由快衰减和慢衰减两个部分组成,随着辐照剂量的增加,快衰减部分衰减速率变化不大,而慢衰减部分衰减速率加快.在5×10-6-10 Gy剂量范围内,α-Al2O3:C晶体的热释光剂量响应呈现良好的线性关系,30 Gy时达到饱和;光释光剂量响应在5×10-6-60 Gy剂量范围内呈现良好的线性关系,100 Gy时达到饱和.与热释光相比,光释光剂量响应具有更高的灵敏度和更宽的线性剂量响应范围. 相似文献
4.
以高纯α-Al2O3和石墨为原料,采用温梯法生长了α-Al2O3:C晶体,使用Ris TL/OSL-DA-15型热释光和光释光仪研究了其热释光和光释光特性.α-Al2O3:C晶体在462K附近有单一热释光峰,发射波长位于410nm.随着辐照剂量的增加,热释光强度逐渐增强,462K的热释光特征峰位置保持不变.α-Al2O3:C晶体的
关键词:
2O3:C')" href="#">α-Al2O3:C
热释光
光释光 相似文献
5.
Thermoluminescence and optically stimulated luminescence disadvantages of α-Al2O3:C crystal grown by the temperature gradient technique 下载免费PDF全文
Recently, α-Al2O3:C crystal with highly
sensitive thermoluminescence (TL) and optically stimulated
luminescence (OSL) has been successfully grown by the temperature gradient
technique. This paper investigates the heating rate dependence of TL
sensitivity, light-induced fading of TL signals and thermal
stability of OSL of α-Al2O3:C crystals. As the
heating rate increases, the integral TL response decreases and the
dosimetric glow peak shifts to higher temperatures in α-Al2O3:C crystals. Light-induced fading of TL increases
with the irradiation dose, and TL response decreases as the exposure
time increases, especially in the first 15 minutes. With the
increasing intensity of the exposure light, the TL fading of α-Al2O3:C crystal increases sharply. The OSL response of
as-grown α-Al2O3:C crystal is quite stable below
373 K and decreases sharply for higher temperatures. 相似文献
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