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基于稀土掺杂石英光纤的单频光纤激光器 被引量:13
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作者 史伟 付士杰 +6 位作者 房强 盛泉 张海伟 白晓磊 史冠男 李锦辉 姚建铨 《红外与激光工程》 EI CSCD 北大核心 2016年第10期1-9,共9页
系统研究了利用稀土掺杂的石英光纤作为激光增益介质来实现分布布拉格反射式单频光纤激光器。实验中,分别将掺有Nd^(3+)、Yb^(3+)、Er^(3+)/Yb^(3+)和Tm^(3+)的商用石英光纤,熔接到激光谐振腔中,实现了基于石英玻璃光纤的光纤激光系统... 系统研究了利用稀土掺杂的石英光纤作为激光增益介质来实现分布布拉格反射式单频光纤激光器。实验中,分别将掺有Nd^(3+)、Yb^(3+)、Er^(3+)/Yb^(3+)和Tm^(3+)的商用石英光纤,熔接到激光谐振腔中,实现了基于石英玻璃光纤的光纤激光系统在多波段的单纵模运转。对各光纤激光器的单频特性进行了研究,其中,激光器线宽可达几十千赫(特别是对于Er^(3+)/Yb^(3+)共掺光纤激光器,其线宽窄于7 kHz),激光系统的强度噪声接近于散粒噪声极限,实验中获得了激光波长由930 nm到2μm的单频光纤激光器。实验结果证明:商用的稀土掺杂石英光纤能够作为有效的增益介质来实现短腔型单频光纤激光器。同时,通过进一步的系统集成,基于稀土掺杂石英光纤的单频光纤激光器将得到更加广泛的应用。 展开更多
关键词 光纤激光器 单频 石英光纤
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Effect of the number of defect particles on the structure and dispersion relation of a two-dimensional dust lattice system
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作者 Rangyue Zhang Guannan Shi +3 位作者 Hanyu Tang Yang Liu Yanhong Liu Feng Huang 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第3期412-417,共6页
The effect of the number of defect particles on the structure and dispersion relations of a two-dimensional(2D) dust lattice is studied by molecular dynamics(MD) simulation. The dust lattice structures are characteriz... The effect of the number of defect particles on the structure and dispersion relations of a two-dimensional(2D) dust lattice is studied by molecular dynamics(MD) simulation. The dust lattice structures are characterized by particle distribution, nearest neighbor configuration and pair correlation function. The current autocorrelation function, the dispersion relation and sound speed are used to represent the wave properties. The wave propagation of the dust lattice closely relates to the lattice structure. It shows that the number of defect particles can affect the dust lattice local structure and then affect the dispersion relations of waves propagating in it. The presence of defect particles has a greater effect on the transverse waves than on the longitudinal waves of the dust lattice. The appropriate number of defect particles can weaken the anisotropy property of the lattice. 展开更多
关键词 complex plasma molecular dynamics(MD)simulation defect particles dust lattice wave
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