期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
重频可调高功率绿光皮秒激光器
1
作者 徐思志 夏瀛 +10 位作者 高瑜博 刘星 欧阳德钦 陈业旺 吴旭 徐方华 郭丽 赵俊清 郭春雨 吕启涛 阮双琛 《光子学报》 EI CAS CSCD 北大核心 2023年第9期29-36,共8页
采用多级串联的主振荡放大技术,将SESAM锁模的种子光通过多级串联端泵Nd∶YVO_(4)晶体放大,产生平均功率为148.7 W、重复频率500 kHz~4 MHz、脉冲宽度8 ps的1064 nm基频光,同时开展了LBO晶体高效率二倍频的研究。通过优化相位匹配,实现... 采用多级串联的主振荡放大技术,将SESAM锁模的种子光通过多级串联端泵Nd∶YVO_(4)晶体放大,产生平均功率为148.7 W、重复频率500 kHz~4 MHz、脉冲宽度8 ps的1064 nm基频光,同时开展了LBO晶体高效率二倍频的研究。通过优化相位匹配,实现了平均功率为95 W的532 nm皮秒激光输出,光-光转换效率达65%,光束质量因子M_(X)^(2)=1.27/M_(Y)^(2)=1.42,6 h功率抖动均方根低于0.8%。该绿光皮秒激光系统具有平均功率高、转换效率高、光束质量好、稳定性高、重频可调等优点,可以被作为皮秒激光加工系统的光源,被应用于科学研究和工业加工领域。 展开更多
关键词 绿光皮秒 皮秒 二次谐波产生 固体放大器 LBO晶体
下载PDF
Influence of Replacing Bacterial Pheophytin with Pheophytin on the Picosecond Fluorescence from Reaction Centers of Purple Bacteria 被引量:1
2
作者 邹永龙 赵福利 +3 位作者 汪河洲 夏安东 曾小华 徐春和 《Acta Botanica Sinica》 CSCD 2000年第12期1243-1248,共6页
Fluorescence spectra of native purple bacterial reaction center (RC) and bacterial pheophytin (Bphe) replaced RCs were obtained from 600 nm to 900 nm with a selective excitation at 597 nm. With the help of measuring ... Fluorescence spectra of native purple bacterial reaction center (RC) and bacterial pheophytin (Bphe) replaced RCs were obtained from 600 nm to 900 nm with a selective excitation at 597 nm. With the help of measuring the fluorescence from bacterial chlorophyll, bacterial pheophytin and plant pheophytin, the corresponding components in the RCs are classified for fluorescence emission. Results showed that pheophytin substitution influences the composition of fluorescence spectra. Therefore, four, three and two components were obtained from fluorescence spectra of native RC, Bphe B_replaced RC and Bphe A,B _replaced RC, respectively. Fluorescence components are well correlated to the binding of plant pheophytin. The decay of excited state of primary electron donor P in different RCs was also studied by measuring the fluorescence decay at 686.4, 674.1 and 681.1 nm, respectively. The decaying kinetics changed in different RCs, indicating that pheophytin replacement influenced the energy transduction and primary photochemical reaction in purple bacterial reaction centers. 展开更多
关键词 pheophytin replacement picosecond fluorescence purple bacterial reaction center
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部