1)  PEC
抽运转换效率
2)  pumping
抽运
1.
The development background,basic structure, principle, pumping, classification as well as the present research situation are described in detail, and the focus research on popular optical fiber laser and its bright outlook in the future are also introduced.
介绍了光纤激光器的发展背景,并对光纤激光器的基本结构、工作原理、抽运方法、分类以及研究现状做了详细的阐述。
3)  pump
抽运
1.
Theoretical study of the pump light absorption inside a three-level solid state laser medium;
三能级固体激光介质对抽运光吸收的理论研究
2.
The results of the relative curves on the output power and threshold power with the spatial characteristic parameters,crystal lengths,transparency rate,and loss of round-trip of laser-diode-pumped all-solid-state Yb∶YAG laser were presented.
由激光晶体的准三能级速率方程出发,在不同条件下对激光二极管抽运的Yb∶YAG激光器的输出功率和阈值功率随着空间变量、晶体长度、透过率、往返损耗等影响下的输出特性进行了理论分析和数值模拟计算,在不同输入功率与阈值功率比值条件下,得到了振荡光斑与泵浦光斑比值为1。
3.
An experiment of double-stage dye laser amplifying system pumped by high average power and high repetition rate Nd∶YAG lasers are presented.
报道了用倍频Nd∶YAG绿光激光器抽运双级染料激光放大系统的实验过程。
4)  pumped
抽运
1.
Diode pumped monolithic nonplanar ring laser has the advantages of compactness, reliability and high efficiency.
激光二极管抽运的单块非平面环形腔固体激光器具有结构稳固、效率高等优点 ,在一定的纵向磁场作用下 ,可形成单向行波振荡 ,纵向抽运时就可得到较高功率的单频输出 ,有广泛的应用前景。
5)  optical pumping
激光抽运
1.
Large spin polarization can be produced in 129Xe nuclei by laser optical pumping and spin exchange.
激光抽运和自旋交换的超极化129Xe核磁共振是近几年发展起来的一种新方法,它比普通129Xe核磁共振的检测灵敏度提高约104~105倍,是研究材料孔结构和孔内粒子分布的强有力工具。
6)  pump-probe
抽运探测
1.
Two-photon absorption (TPA) of the CdS defect layer in the photonic crystals was investigated by pump-probe measurement.
用抽运探测技术研究了CdS缺陷层的双光子吸收(TPA)现象。
2.
The importance of magnetic material and femtosecond laser pump-probe technology are described firstly and the process of femtosecond pump-probe technology is expounded.
阐述了磁性材料的重要性及其超快过程研究中存在的问题,对飞秒抽运探测(Pump-probe)技术的试验方法和原理进行了论述。
3.
Two-photon absorption coefficient was investigated by pump-probe measurement.
采用真空镀膜工艺制备了具有762 nm和800 nm双缺陷模的含两个CdS缺陷层的TiO2/SiO2一维光子晶体,运用抽运探测技术测量了其双光子吸收。
参考词条
补充资料:抽抽趔趔
1.犹言别别扭扭。
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