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Three-dimensional modulations on the states of polarization of light fields 被引量:2
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作者 Peng Li dongjing wu +5 位作者 Sheng Liu Yi Zhang Xuyue Guo Shuxia Qi Yu Li Jianlin Zhao 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第11期202-214,共13页
Light fields with spatially structured states of polarization(SoPs) are gathering increasing attention because of their potential applications from optical imaging and micromanipulation to classical and quantum comm... Light fields with spatially structured states of polarization(SoPs) are gathering increasing attention because of their potential applications from optical imaging and micromanipulation to classical and quantum communications. Meanwhile,the concepts within structured light fields have been extended and applied to acoustic, electron, and matter waves. In this article, we review recent developments of the SoP modulation of light fields, especially focusing on three-dimensional(3 D) modulations on the SoPs of light fields. The recent progress and novel implementations based on 3 D spin-dependent separation are discussed. Following the discussions to this physical phenomenon, we then describe recent developments on the vector fields with 3 D structured SoP and intensity distributions, namely, 3 D vector fields. The discussed phenomena inspire us to explore other structured light fields for the expansion of applications in biomedical, information science,quantum optics, and so on. 展开更多
关键词 POLARIZATION PHASE vector field spin-orbit interaction
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Highly efficient generation of arbitrary vector beams with tunable polarization, phase, and amplitude 被引量:29
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作者 SHENG LIU SHUXIA QI +4 位作者 YI ZHANG PENG LI dongjing wu LEI RAN JIANLIN ZHAO 《Photonics Research》 SCIE EI 2018年第4期228-233,共6页
We propose an efficient and robust method to generate tunable vector beams by employing a single phasetype spatial light modulator(SLM). With this method, a linearly polarized Gaussian beam can be converted into a vec... We propose an efficient and robust method to generate tunable vector beams by employing a single phasetype spatial light modulator(SLM). With this method, a linearly polarized Gaussian beam can be converted into a vector beam with arbitrarily controllable polarization state, phase, and amplitude. The energy loss during the conversion is greatly reduced and depends mainly on the reflectivity of the SLM. We experimentally demonstrate that conversion efficiency of about 47% is achieved by using an SLM with reflectivity of 62%.Several typical vector beams, including cylindrical vector beams, vector beams on higher order Poincaré spheres,and arbitrary vector beams attached with phases and with tunable amplitude, are generated and verified experimentally. This method is also expected to create high-power vector beams and play important roles in optical fabrication and light trapping. 展开更多
关键词 空间光调制器 光束 通讯技术 发展现状
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Polarization oscillating beams constructed by copropagating optical frozen waves 被引量:7
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作者 PENG LI dongjing wu +4 位作者 YI ZHANG SHENG LIU Yu LI SHUXIA QI JIANLIN ZHAO 《Photonics Research》 SCIE EI 2018年第7期756-761,共6页
Polarization oscillating beams, namely, polarization standing waves, commonly formed by a pair of coherent counterpropagating light waves with orthogonal polarizations, oscillate their states of polarization periodica... Polarization oscillating beams, namely, polarization standing waves, commonly formed by a pair of coherent counterpropagating light waves with orthogonal polarizations, oscillate their states of polarization periodically within a wavelength interval, offering conceptual and practical interests in light-matter interactions such as the nonreciprocal magnetoelectric effect, and impressive applications in optical imaging, sensing, and chirality detection. Here, we propose a new class of polarization oscillating beams that longitudinally vary states of polarization with spatial intervals within centimeters via the superposition of two copropagating optical frozen waves with preshaped longitudinal intensity profiles and transverse phase structures. The flexibility and manipulability are demonstrated by creating several polarization oscillating beams with different polarization structures. This work paves a new way to manipulate other waves and may be useful for applications of optical standing waves in optical manipulation, light guiding of atoms, polarization-sensitive sensing, etc. 展开更多
关键词 偏振振荡光束 光波 通信技术 理论分析
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Self-accelerated optical activity in free space induced by the Gouy phase 被引量:4
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作者 PENG LI XINHAO FAN +3 位作者 dongjing wu SHENG LIU YU LI JIANLIN ZHAO 《Photonics Research》 SCIE EI CSCD 2020年第4期475-481,共7页
Optical activity(OA)is the rotation of the polarization orientation of the linearly polarized light as it travels through certain materials that are of mirror asymmetry,including gases or solutions of chiral molecules... Optical activity(OA)is the rotation of the polarization orientation of the linearly polarized light as it travels through certain materials that are of mirror asymmetry,including gases or solutions of chiral molecules such as sugars and proteins,as well as metamaterials.The necessary condition for achieving OA is the birefringence of two circular polarizations in material.Here,we propose a new kind of self-accelerated OA in free space,based on the intrinsic Gouy phase induced mode birefringence of two kinds of quasi-non-diffracting beams.We provide a detailed insight into this kind of self-accelerated OA by analyzing angular parameters,including angular direction,velocity,acceleration,and even the polarization transformation trajectory.As the Gouy phase exists for any wave,this kind of self-accelerated OA can be implemented in other waves beyond optics,from acoustic and elastic waves to matter waves. 展开更多
关键词 Self-accelerated optical activity the Gouy phase
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Modulation of orbital angular momentum on the propagation dynamics of light fields 被引量:2
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作者 Peng LI Sheng LIU +6 位作者 Yi ZHANG Lei HAN dongjing wu Huachao CHENG Shuxia QI Xuyue GUO Jianlin ZHAO 《Frontiers of Optoelectronics》 EI CSCD 2019年第1期69-87,共19页
Optical vortices carrying orbital angular momentum(OAM)have attracted extensive attention in recent decades because of their interesting applications in optical trapping,optical machining,optical communication,quantum... Optical vortices carrying orbital angular momentum(OAM)have attracted extensive attention in recent decades because of their interesting applications in optical trapping,optical machining,optical communication,quantum information,and optical microscopy.Intriguing effects induced by OAMs,such as angular momentum conversion,spin Hall effect of light(SHEL),and spin– orbital interaction,have also gained increasing interest.In this article,we provide an overview of the modulations of OAMs on the propagation dynamics of scalar and vector fields in free space.First,we introduce the evolution of canonical and noncanonical optical vortices and analyze the modulations by means of local spatial frequency.Second,we review the Pancharatnam–Berry(PB)phases arising from spin–orbital interaction and reveal the control of beam evolution referring to novel behavior such as spindependent splitting and polarization singularity conversion.Finally,we discuss the propagation and focusing properties of azimuthally broken vector vortex beams. 展开更多
关键词 ORBITAL ANGULAR MOMENTUM POLARIZATION SPIN ANGULAR MOMENTUM Pancharatnam-Berry (PB) phase ANGULAR DIFFRACTION
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