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国家自然科学基金(61138003)

作品数:4 被引量:25H指数:3
相关作者:李玉茹李朝晖贾平闵长俊牛憨笨更多>>
相关机构:深圳大学暨南大学南开大学更多>>
发文基金:国家自然科学基金广东省自然科学基金更多>>
相关领域:电子电信生物学更多>>

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光学旋涡与轨道角动量光通信被引量:12
2014年
光学旋涡(optical vortices,OV)光束包含螺旋型相位因子,具有全新的自由度——轨道角动量(orbital angular momentum,OAM).OAM本征值为l,且理论上拓扑荷l可取任意整数,这为光学旋涡在光通信系统中的各种应用提供基础.目前有很多方法可用于光学旋涡的产生与检测,而光学旋涡在光通信系统中的应用也正是基于这些方法.OAM在自由空间光通信系统中的应用机制可分为OAM键控(OAM状态作为调制方式)和OAM复用(OAM光束作为复用信道).针对这两种机制已展开大量的理论研究和实验探索,认为光学旋涡可为丰富自由空间光通信系统的调制方式和增加传输容量提供潜在的解决方案.光学旋涡光束的OAM和角向位置的不确定性关系也为之带来了与生俱来的安全优势.光学旋涡的独有特性为光通信系统的性能改善提供了巨大潜力.
袁小聪贾平雷霆张萌闵长俊李玉茹李朝晖牛憨笨
关键词:光通信技术轨道角动量自由空间光通信通信容量误码率
Recent Advances in Super-Resolution Fluorescence Imaging and Its Applications in Biology被引量:4
2013年
Fluorescence microscopy has become an essential tool for biological research because it can be minimally invasive, acquire data rapidly, and target molecules of interest with specific labeling strategies. However, the diffraction-limited spatial resolution, which is classically limited to about 200 nm in the lateral direction and about 500 nm in the axial direction, hampers its application to identify delicate details of subcellular structure. Extensive efforts have been made to break diffraction limit for obtaining high-resolution imaging of a biological specimen. Various methods capable of obtaining super-resolution images with a resolution of tens of nanometers are currently available. These super-resolution techniques can be generally divided into three primary classes: (1) patterned illumination- based super-resolution imaging, which employs spatially and temporally modulated illumination light to reconstruct sub-diffraction structures; (2) single-molecule localization-based super-resolution imaging, which localizes the profile center of each individual fluo- rophore at subdiffraction precision; (3) bleaching/blinking-based super-resolution imaging. These super-resolution techniques have been utilized in different biological fields and provide novel insights into several new aspects of life science. Given unique technical merits and commercial availability of super-resolution fluorescence microscope, increasing applications of this powerful technique in life science can be expected.
Rongcheng HanZhenghong LiYanyan FanYuqiang Jiang
关键词:SUPER-RESOLUTIONBIO-IMAGING
Polarization and amplitude hybrid modulation of longitudinally polarized subwavelength-sized optical needle被引量:1
2013年
We present a method of both polarization and amplitude modulations on an incident beam to obtain a longitudinally polarized subwavelength-sized optical needle. A 4-f system with a spatial light modulator is used to generate experimentally a two-mode alternate cylindrical vector beam by polarization modulation, enhancing performance and facilitating implementation. We optimize the beam focusing properties after passing the beam through an annular aperture to obtain amplitude modulation by the simulated annealing algorithm. Numerical results indicate that a sharp focal spot (0.417A) with a long focal depth (8A) and a strong longitudinally polarized field can be easily achieved.
郭丽娇闵长俊魏仕彪袁小聪
关键词:NEEDLES
Demonstration of orbital angular momentum channel healing using a Fabry‐Pérot cavity被引量:8
2018年
Orbital angular momentum (OAM) mode division provides a promising solution to push past the already exhausted available degrees of freedom available in conventional optical communications. Nevertheless, the practical deploymentof OAM within a free-space optical (FSO) communications system is still hampered by a major challenge, namely that OAM-based FSO links are vulnerable to disturbances. Though several techniques, such as using various non-diffraction beams and multiple transmit–receive apertures, are proposed to alleviate the influence of disturbances, these techniquessignificantly reduce the performance with regard to combating single fading for spatial blockages of the laser beam byobstructions. In this work, we initially demonstrate that a Fabry-Pérot resonant cavity has the ability to implement OAM mode healing, even for a blocking percentage of over 50%. Consequently, the proposed method will expand the use ofOAM in the FSO secure communications and quantum encryption fields.
Shibiao WeiDapeng WangJiao LinXiaocong Yuan
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