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国家自然科学基金(51132004)

作品数:13 被引量:25H指数:3
相关作者:孙真荣贾天卿潘佳霍燕燕贾鑫更多>>
相关机构:华东师范大学浙江大学华南理工大学更多>>
发文基金:国家自然科学基金广东省自然科学基金上海市自然科学基金更多>>
相关领域:理学电子电信机械工程一般工业技术更多>>

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13 条 记 录,以下是 1-10
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飞秒激光诱导自组织纳米周期结构及其光学特性的研究进展被引量:12
2013年
飞秒激光具有超快、超强的特点.飞秒激光微纳加工发展非常迅速.本文综述了近十年来利用飞秒激光在金属、半导体、介质等各类材料中制备的纳米周期结构,阐述了若干关于飞秒激光诱导纳米周期结构的物理机理的观点.讨论了基于偏振调制的多光束干涉在半导体表面制备纳米周期结构,简要叙述了周期结构对材料光学特性的影响.
彭娜娜霍燕燕周侃贾鑫潘佳孙真荣贾天卿
关键词:飞秒激光多光束干涉光学特性
室温下CdSe胶体量子点超快自旋动力学
2012年
利用时间分辨法拉第旋转光谱技术研究了室温下CdSe胶体量子点的自旋相干特性.获得了不同磁场下的自旋退相干时间,并分析了自旋退相干的物理机理.零磁场时量子点激子自旋退相干时间为102 ps,主要受电子与核自旋之间的超精细相互作用所影响.当外加横向磁场强度为250 mT时,激子自旋退相干时间为294 ps;增大磁场强度,自旋退相干时间逐渐减小.在较强磁场环境中(≥250mT),量子点激子自旋动力学由非均匀退相干机制所主导.
李霞冯东海潘贤群贾天卿单璐繁邓莉孙真荣
关键词:量子点CDSE
超快电子衍射技术及其应用被引量:1
2015年
时间和空间上实时观测原子运动对于自然科学研究有着非常重大的意义,而超快电子衍射(UED)技术同时具备飞秒激光脉冲的高时间分辨特性和电子衍射技术的高空间特性,可以为实时观测原子级分辨尺度物质的结构变化提供一种有效工具.本文综述了超快电子衍射技术的发展历史、实验方法以及相关应用,并且展望了超快电子衍射技术未来的发展.
裴敏洁齐大龙齐迎朋贾天卿张诗按孙真荣
关键词:飞秒激光脉冲电子源原子运动
Ultrafast time-resolved imaging of femtosecond laser-induced periodic surface structures on Ga As
2014年
We report the formation dynamics of periodic ripples on Ga As induced by femtosecond laser pulses(800 nm, 50 fs) via a collinear time-resolved imaging technique with a temporal resolution of 1 ps and a spatial resolution of 440 nm. The onset of periodic ripples emerges in the initial tens of picoseconds in the timescale of material ejection. The periodic ripples appear after irradiation of at least two pump pulses at surface defects produced by the first pulse and the ripple positions kept stable until the formation processes complete. The formation mechanisms of laser-induced periodic ripples are also discussed.
贾鑫袁艳红杨党强贾天卿孙真荣
Experimental demonstration of transverse mode instability enhancement by a counter-pumped scheme in a 2 kW all-fiberized laser被引量:6
2017年
Transverse mode instability(TMI)has become the major limitation for power scaling of fiber lasers with nearly diffraction-limited beam quality.Compared with a co-pumped fiber laser,a counter-pumped fiber laser reveals TMI threshold enhancement through a semi-analytical model calculation.We demonstrated a 2 kW high-power counter-pumped all-fiberized laser without observation of TMI.Compared with the co-pumped scheme,the TMI threshold is enhanced at least 50%in counter-pumped scheme,moreover,stimulated Raman scattering and four-wave mixing are suppressed simultaneously.
ZEBIAO LIZHIHUA HUANGXIAOYU XIANGXIAOBAO LIANGHONGHUAN LINSHANHUI XUZHONGMIN YANGJIANJUN WANGFENG JING
关键词:TMI
Up-conversion luminescence tuning in Er^3+ -doped ceramic glass by femtosecond laser pulse at different laser powers被引量:1
2018年
The up-conversion luminescence tuning of rare-earth ions is an important research topic for understanding luminescence mechanisms and promoting related applications. In this paper, we experimentally study the up-conversion luminescence tuning of Er3+-doped ceramic glass excited by the unshaped, V-shaped and cosine-shaped femtosecond laser field with different laser powers. The results show that green and red up-conversion luminescence can be effectively tuned by varying the power or spectral phase of the femtosecond laser field. We further analyze the up-conversion luminescence tuning mechanism by considering different excitation processes, including single-photon absorption(SPA), two-photon absorption(TPA), excited state absorption(ESA), and energy transfer up-conversion(ETU). The relative weight of TPA in the whole excitation process can increase with the increase of the laser power, thereby enhancing the intensity ratio between green and red luminescence(I547/I656). However, the second ETU(ETU2) process can generate red luminescence and reduce the green and red luminescence intensity ratio I547/I656, while the third ESA(ESA3) process can produce green luminescence and enhance its control efficiency. Moreover, the up-conversion luminescence tuning mechanism is further validated by observing the up-conversion luminescence intensity, depending on the laser power and the down-conversion luminescence spectrum under the excitation of 400-nm femtosecond laser pulse. These studies can present a clear physical picture that enables us to understand the up-conversion luminescence tuning mechanism in rare-earth ions, and can also provide an opportunity to tune up-conversion luminescence to promote its related applications.
Wen-Jing ChengGuo LiangPing WuShi-Hua ZhaoTian-Qing JiaZhen-Rong SunSift-An Zhang
Periodic surface structures on Ni–Fe film induced by a single femtosecond laser pulse with diffraction rings被引量:1
2017年
This Letter reports the formation of periodic surface structures on Ni–Fe film irradiated by a single femtosecond laser pulse. A concave lens with a focus length of-150 mm is placed in front of an objective(100×, NA=0.9),which transforms the Gaussian laser field into a ring distribution by the Fresnel diffraction. Periodic ripples form on the ablation area after the irradiation of a single femtosecond laser pulse, which depends on the laser polarization and laser fluence. We propose that the ring structure of the laser field leads to a similar transient distribution of the permittivity on the sample surface, which further launches the surface plasmon polaritons. The interaction of the incident laser with surface plasmon polaritons dominates the formation of periodic surface structures.
周侃贾鑫郗慧霞刘聚坤冯东海张诗按孙真荣贾天卿
关键词:DIFFRACTIONPHONONSPHOTONSPLASMONS
Polarization control of multi-photon absorption under intermediate femtosecond laser field
2017年
It has been shown that the femtosecond laser polarization modulation is a very simple and well-established method to control the multi-photon absorption process by the light-matter interaction. Previous studies mainly focused on the multi- photon absorption control in the weak field. In this paper, we further explore the polarization control behavior of multi- photon absorption process in the intermediate femtosecond laser field. In the weak femtosecond laser field, the second- order perturbation theory can well describe the non-resonant two-photon absorption process. However, the higher order nonlinear effect (e.g., four-photon absorption) can occur in the intermediate femtosecond laser field, and thus it is necessary to establish new theoretical model to describe the multi-photon absorption process, which includes the two-photon and four-photon transitions. Here, we construct a fourth-order perturbation theory to study the polarization control behavior of this multi-photon absorption under the intermediate femtosecond laser field excitation, and our theoretical results show that the two-photon and four-photon excitation pathways can induce a coherent interference, while the coherent interference is constructive or destructive that depends on the femtosecond laser center frequency. Moreover, the two-photon and four- photon transitions have the different polarization control efficiency, and the four-photon absorption can obtain the higher polarization control efficiency. Thus, the polarization control efficiency of the whole excitation process can be increased or decreased by properly designing the femtosecond laser field intensity and laser center frequency. These studies can provide a clear physical picture for understanding and controlling the multi-photon absorption process in the intermediate femtosecond laser field, and also can provide a theoretical guidance for the future experimental realization.
程文静刘沛梁果吴萍贾天卿孙真荣张诗按
单光束飞秒激光诱导玻璃内部纳米光栅机理及应用研究进展被引量:4
2017年
单光束飞秒激光诱导的玻璃内部纳米光栅结构自发现以来就受到了广泛的关注,成为飞秒激光与物质相互作用研究领域的一大热点。经过十几年的发展,这一研究方向在基础研究和应用探索方面均取得了很大的进步。主要综述了飞秒激光诱导玻璃内部自组织纳米光栅的研究现状,围绕影响纳米光栅形成的关键参数、形成机理和应用探索等方面,重点介绍了这一研究领域近五年来的进展,并对当前研究中存在的问题进行了总结和对未来发展前景进行了展望。
王珏晨张芳腾邱建荣
关键词:激光制造超快光学飞秒激光
Enhanced 1.8 μm emission in Er^(3+)/Tm^(3+) co-doped lead silicate glasses under different excitations for near infrared laser被引量:1
2016年
A detailed study of the fluorescence emission properties and energy transfer mechanism in Er^(3+)/Tm^(3+) co-doped lead silicate glasses was reported. Enhanced near infrared 1.8 μm and visible up-conversion emissions were investigated under 808 and 980 nm excitations, respectively. The energy transfer mechanism between Er^(3+) and Tm^(3+) was analyzed according to the absorption spectra, the emission spectra and the level structures of Er^(3+) and Tm^(3+). The energy transfer efficiency between Er^(3+) and Tm^(3+) reached 68.1% in the Er^(3+)/Tm^(3+) co-doped lead silicate glasses when pumped by 808 nm laser diode. Based on the absorption spectra, the Judd-Ofelt parameters, spontaneous emission probability, absorption and emission cross sections, gain coefficients were calculated and analyzed. It was found that the calculated emission cross section and the maximum gain coefficient around 1.8 μm were 4.9×10^(–21)cm^2 and 1.12 cm^(–1), respectively. These results indicated that the Er^(3+)/Tm^(3+) co-doped lead-silicate glasses had potential application in near infrared lasers.
朱婷婷唐国武陈晓东孙敏钱奇杨中民
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