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基于石墨烯可饱和吸收体的Er∶YAG被动调Q激光器
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作者 陈言 张沛雄 +3 位作者 权聪 孙敦陆 李真 陈振强 《人工晶体学报》 CAS 北大核心 2024年第7期1127-1135,共9页
本文研究了一种采用氙灯侧泵方式,并基于石墨烯可饱和吸收体的Er∶YAG被动调Q激光器。首先成功将石墨烯转移至Al_(2)O_(3)衬底制备得到石墨烯可饱和吸收体,并对其进行了形貌、结构及化学状态等性能表征。此外,对基于石墨烯可饱和吸收体... 本文研究了一种采用氙灯侧泵方式,并基于石墨烯可饱和吸收体的Er∶YAG被动调Q激光器。首先成功将石墨烯转移至Al_(2)O_(3)衬底制备得到石墨烯可饱和吸收体,并对其进行了形貌、结构及化学状态等性能表征。此外,对基于石墨烯可饱和吸收体的Er∶YAG被动调Q激光特性进行了研究,结果表明单脉冲能量从0.4 mJ增加至7 mJ,输出激光单脉冲宽度从761.2 ns下降至510 ns,最大峰值功率为13.7 kW。激光中心波长位于2935和2945 nm,且主波长在2935 nm处对应的半峰全宽(FWHM)为1.535 nm。沿x和y方向的光束质量因子分别为4.45和5.76。实验结果表明,该研究为推进更低成本、谐振腔设计简单且紧凑的2.94μm波段Er∶YAG激光器的发展提供了有效的参考依据。 展开更多
关键词 石墨烯可饱和吸收体 氙灯侧泵 被动调Q Er∶YAG ~3μm激光
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含镓石榴石系列大晶格常数磁光衬底单晶研究进展
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作者 李泓沅 孙敦陆 +3 位作者 张会丽 罗建乔 权聪 程毛杰 《人工晶体学报》 CAS 北大核心 2024年第10期1657-1668,共12页
近年来,光通信技术与集成电子器件飞速发展,以稀土铁石榴石(RIG)为代表的磁光薄膜被视为应用于近红外通信窗口最具潜力的磁光材料。为了尽量减小磁光薄膜在制备过程中相关性能受到的影响,衬底材料的选择成为关键。制备RIG磁光薄膜通常采... 近年来,光通信技术与集成电子器件飞速发展,以稀土铁石榴石(RIG)为代表的磁光薄膜被视为应用于近红外通信窗口最具潜力的磁光材料。为了尽量减小磁光薄膜在制备过程中相关性能受到的影响,衬底材料的选择成为关键。制备RIG磁光薄膜通常采用Si类及石榴石氧化物类作为衬底材料。RIG磁光薄膜的晶格常数一般在12.4左右,含镓类石榴石氧化物单晶衬底基片与其晶格常数相近,具有大晶格常数特性,是其合适的衬底材料之一。但是,由于原料氧化镓高温易挥发,使含镓类石榴石单晶制备成为一直以来关注和讨论的热点。深入研究含镓类石榴石衬底单晶有望促进新一代磁光器件的发展。本文综述了在含镓类石榴石系列单晶中,氧化物磁光衬底单晶的研究进展,总结了本团队在该类晶体生长、晶体结构、关键参数等方面的研究工作,展望了该类晶体的研究发展趋势。 展开更多
关键词 晶体生长 磁光衬底 含镓石榴石晶体 提拉法 晶格常数
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Study on Lattice Parameter Variance and Eutectic Reaction during Crystal Growth of Nd,Cr∶GSGG by Czochralksi Method
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作者 Zhang Qingli Yin Shaotang +2 位作者 sun dunlu Shao Shufang Gu Changjiang 《Journal of Rare Earths》 SCIE EI CAS CSCD 2006年第z1期140-143,共4页
During the crystal growth of Nd,Cr∶GSGG by Czochralski method,in some cases eutectic reaction occurred in the nether region of the crystal,and the boule was divided into two obvious different parts,which is upper Nd... During the crystal growth of Nd,Cr∶GSGG by Czochralski method,in some cases eutectic reaction occurred in the nether region of the crystal,and the boule was divided into two obvious different parts,which is upper Nd,Cr∶GSGG crystal and the nether coexisting Nd,Cr∶GSGG and GdScO_(3).By X-ray powder diffraction,the structure change of NdCr∶GSGG crystal ofΦ27 mm×120 mm with eutectic along its grown direction<111>was studied.By the least square method and extrapolation function f=sinθ-sinθ^(1-t)(t is an adjustable parameter),the lattice parameters of Nd,Cr∶GSGG and additional GdScO_(3)phase were computed.The results indicate that the lattice parameters of Nd,Cr∶GSGG increase along its growth direction,which changes from a=(1.25650±0.00007)nm of the top to(1.25798±0.00010)nm of the bottom.In the process of Nd,Cr∶GSGG growth,Gd^(3+)in Nd,Cr∶GSGG is partly replaced by Nd^(3+)with larger ionic radii,and the volatilization of Ga component results in its composition variance,which cause the lattice parameters increase along growth direction.In the eutectic section,there are the Nd,Cr∶GSGG and the second phase orthorhombic GdScO_(3).The lattice parameters of GdScO_(3)are a=0.5443±0.0007,b=0.5699±0.0005 and c=(0.7865±0.0009)nm,and that of Nd,Cr∶GSGG is(1.25798±0.00010)nm.In the final growth stage,excessive volatilization of Ga composition during the crystal growth causes the growth melt deflect of the Nd,Cr∶GSGG solid solution range seriously,and results in the eutectic reaction,and the outgrowth of Nd,Cr∶GSGG and GdScO_(3).So it is necessary to decrease the effect of gallium volatilization during the growth in order to avoid eutectic growth and obtain a high-quality Nd,Cr∶GSGG. 展开更多
关键词 Nd Cr:GSGG eutectic growth lattice parameter X-ray diffraction
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Lattice Parameter Change of Nd∶Gd_(3)Ga_(5)O_(12) Crystal with Growth Direction
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作者 sun dunlu Zhang Qingli +5 位作者 Wang Zhaobing Su Jing Zhang Xia Shao Shufang Gu Changjiang Yin Shaotang 《Journal of Rare Earths》 SCIE EI CAS CSCD 2006年第z1期149-151,共3页
The lattice parameter change of Nd∶GGG crystal was studied by X-ray powder diffraction and the least square fitting method.The results indicate that the lattice parameters of Nd∶GGG increase along the crystal growth... The lattice parameter change of Nd∶GGG crystal was studied by X-ray powder diffraction and the least square fitting method.The results indicate that the lattice parameters of Nd∶GGG increase along the crystal growth direction.By analyzing the Nd∶GGG crystal structure and ions occupying site,the reason of lattice parameter change is mainly attributed to the volatilization of gallium ingredient and lead to the Ga vacancy sites(Oxygen octahedral center)were occupied by Gd^(3+)with large ionic radii,and that the substitute increases with the crystal growth direction.In addition,the Gd sites(oxygen dodecahedron center)were occupied by dopant Nd^(3+)with large ionic radii and the Nd3+distribution coefficient in GGG crystal is smaller than 1,therefore,the substitute also increased with the crystal growth direction,which is another reason led to the lattice parameter increase along the crystal growth direction.In order to decrease the lattice parameter change and improve the crystal quality,some methods were adopted to restrain effectively the Ga_(2)O_(3)volatilization and decrease the Nd^(3+)concentration change along the crystal growth direction. 展开更多
关键词 ND:GGG lattice parameter VOLATILIZATION distribution coefficient
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氙灯抽运Er∶YAP晶体的中红外激光性能 被引量:6
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作者 权聪 孙敦陆 +7 位作者 罗建乔 张会丽 方忠庆 赵绪尧 胡伦珍 程毛杰 张庆礼 殷绍唐 《中国激光》 EI CAS CSCD 北大核心 2019年第4期12-18,共7页
采用氙灯抽运研究了原子数分数为10%的Er^(3+)掺杂的YAP晶体在2.7~3μm波段的激光性能,使用3种不同透射率的输出镜,实现了最大输出能量为1173 mJ@1 Hz、1284 mJ@5 Hz、495 mJ@10 Hz、104 mJ@20 Hz的激光输出,对应的斜率效率分别为0.80%... 采用氙灯抽运研究了原子数分数为10%的Er^(3+)掺杂的YAP晶体在2.7~3μm波段的激光性能,使用3种不同透射率的输出镜,实现了最大输出能量为1173 mJ@1 Hz、1284 mJ@5 Hz、495 mJ@10 Hz、104 mJ@20 Hz的激光输出,对应的斜率效率分别为0.80%、0.99%、0.84%和0.44%。当重复频率为5 Hz,透射率为15%时,该晶体具有最大的输出能量和激光效率,相应的平均输出功率达到了6.42 W,约是目前已报道最好结果的4倍。测量了不同输入功率下Er∶YAP激光的光束质量,随着输入功率的增加,其光束质量逐渐下降。在输出激光中观察到了波长分别为2710,2728,2795,2918 nm的4条激光谱线。因此,Er∶YAP晶体可以实现优良的多波长中红外激光输出。 展开更多
关键词 激光器 铒激光 Er∶YAP晶体 氙灯抽运 吸收光谱 激光光束表征
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Segregation during crystal growth from melt and absorption cross section determination by optical absorption method 被引量:5
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作者 ZHANG QingLi YIN ShaoTang +1 位作者 sun dunlu WAN SongMing 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2008年第5期481-491,共11页
Segregation during crystal growth from melt under two conditions is studied by using crystal mass,which can be measured easily,as an independent variable,and a method to determine the effective segregation coefficient... Segregation during crystal growth from melt under two conditions is studied by using crystal mass,which can be measured easily,as an independent variable,and a method to determine the effective segregation coefficient and absorption cross section of optical dopant is given.When the segregated solute disperses into the whole or just a part of melt homogenously,the concentration CS in solid interface will change by different formulas.If the crystal growth interface is conical and segregated solute disperses into melt in total or part,the solute concentration at r=2/3R,where r is the distance from the growth cross section center and R the crystal radius,is independent on the shape of the crystal growth interface,and its variation at r=2/3R can be regarded as the result from crystal growth in flat interface.With CS variation formula in solid and absorption cross section σ for optical dopant,the absorption coefficients along the crystal growth direction can be calculated,and the corresponding experimental value can be obtained through the crystal optical absorption spectra.By minimizing the half sum,whose independent variables are k,ΔW or σ,of the difference square between the calculated and experimental absorp-tion coefficients from one or more absorption peaks along the crystal growth di-rection,k and σ,or k and ΔW,can be determined at the same time through the Levenberg-Marquardt iteration method.Finally,the effective segregation coefficient k,ΔW and absorption cross sections of Nd:GGG were determined,the results fitted by two formula gave more closed effective segregation coefficient,and the value ΔW also indicates that the segregated dopant had nearly dispersed into the whole melt.Experimental results show that the method to determine effective segregation coefficient k,ΔW and absorption cross sections σ is convenient and reliable,and the two segregation formulas can describe the segregation during the crystal growth from melt relatively commendably. 展开更多
关键词 effective SEGREGATION COEFFICIENT ABSORPTION cross section ABSORPTION spectrum CRYSTAL growth ND:GGG
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