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41 mW high average power picosecond 177.3 nm laser by second-harmonic generation in KBBF
Yang, F ; Wang, ZM ; Zhou, Y ; Cheng, XK ; Xie, SY ; Peng, QJ ; Cui, DF ; Zhang, JY ; Wang, XY ; Zhu, Y ; Chen, CT ; Xu, ZY
刊名OPTICS COMMUNICATIONS
2010
卷号283期号:1页码:142
关键词PRISM-COUPLED DEVICE PHASE-MATCHING CHARACTERISTICS KBE2BO3F2 CRYSTAL DEEP-ULTRAVIOLET HARMONIC-GENERATION FEMTOSECOND PULSES LIGHT-SOURCE
ISSN号0030-4018
通讯作者Yang, F: CAS, Inst Phys, Lab Opt Phys, Beijing, Peoples R China.
中文摘要Microstructures of multiferroic BiFeO3 thin films epitaxially grown on SrRuO3-buffered SrTiO3 (001) substrates by laser molecular-beam epitaxy under two non-optimized oxygen pressures were characterized by means of transmission electron microscopy. The results showed that the films grown under oxygen pressures of 1 Pa and 0.3 Pa contain a secondary phase embedded in the BiFeO3 matrix. High-angle annular dark-field imaging, elemental mapping and composition analysis in combination with selected area electron diffraction revealed that the parasitic phase is mainly antiferromagnetic -Fe2O3. The -Fe2O3 particles are semi-coherently embedded in the BiFeO3 films, as confirmed by high-resolution transmission electron microscopy. In addition to the -Fe2O3 phase, ferromagnetic Fe3O4 precipitates were found in the BiFeO3 films grown under 0.3 Pa and shown to accumulate in areas near the film/substrate interfaces. In our heteroepitaxy systems, very low density misfit dislocations were observed at the interfaces between the BiFeO3 and SrRuO3 layers implying that their misfit strains may be relieved by the formation of the secondary phases. Using X-ray photoelectron spectroscopy it was found that Fe exists in the +3 oxidation state in these films. The possible formation mechanisms of the secondary phases are discussed in terms of film growth conditions.
收录类别SCI
资助信息State Key Program for Basic Research of China [2004CB619006, 2004CB619001];National Natural Science Foundation of China [60578030, 50590404]
语种英语
公开日期2013-09-17
内容类型期刊论文
源URL[http://ir.iphy.ac.cn/handle/311004/32785]  
专题物理研究所_物理所公开发表论文_物理所公开发表论文_期刊论文
推荐引用方式
GB/T 7714
Yang, F,Wang, ZM,Zhou, Y,et al. 41 mW high average power picosecond 177.3 nm laser by second-harmonic generation in KBBF[J]. OPTICS COMMUNICATIONS,2010,283(1):142.
APA Yang, F.,Wang, ZM.,Zhou, Y.,Cheng, XK.,Xie, SY.,...&Xu, ZY.(2010).41 mW high average power picosecond 177.3 nm laser by second-harmonic generation in KBBF.OPTICS COMMUNICATIONS,283(1),142.
MLA Yang, F,et al."41 mW high average power picosecond 177.3 nm laser by second-harmonic generation in KBBF".OPTICS COMMUNICATIONS 283.1(2010):142.
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