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4篇 您的检索式:作者名="Lin Chenfang"
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1Angular response of ‘pin-hole' imaging structure measured by collimated β source显示文摘The pitch-angle distribution of energetic particles is important for space physics studies on magnetic storm and particle acceleration.A‘pin-hole’imaging structure is built with the‘pin-hole’technique and a position sensitive detector,which can be used to measure the pitch angle distribution of energetic particles.To calibrate the angular response of the‘pin-hole’imaging structure,special experiment facilities are needed,such as the particle accelerator with special design.The features of this kind of particle accelerator are:1)The energy range of the outgoing particles should be mid-energy particles(tens keV to several hundred keV);2)the particle flux should be consistent in time-scale;3)the directions of the outgoing particles should be the same and 4)the particle number within the spot should be low enough.In this paper,a method to calibrate the angular response of the‘pin-hole’imaging structure by the90Sr/90Y β source with a collimator is introduced and simulated by Geant4 software.The result of the calibration with the collimated β source is in accord with the Geant4 simulations,which verifies the validity of this method.ZOU Hong LUO Lin LI ChenFang JIA XiangHong XU Feng CHEN HongFei CHEN Jiang SHI WeiHong YU XiangQian ZOU JiQing 2013Science China(Technological Sciences)2013,56,11:10
2Simulations of organic carbon transformation in dye wastewater and treatment suggestions显示文摘Hu Tai-Lee Lin Chenfang Chiang K Y 2004Advances in Environmental Research2004,,8:1
3Plasmonic Coupling of Bow Tie Antennas with Ag Nanowire显示文摘Zheyu Fang Linran Fan Chenfang Lin 2011Nano Lett2011,11,:1
4Evolution of the Raman spectrum of graphene grown on copper upon oxidation of the substrate显示文摘在在一部铜电影上种的单个层的 graphene 的拉曼光谱的重要变化在发生在周围的条件下面的内在的底层的自发的氧化以后被观察。graphene G 和 2D 拉曼模式的频率被发现经历红移动,当二个乐队的紧张由超过一个数量级变化时。为了理解这些的起源,完成,我们进一步由扫描通道描绘了样品显微镜学(STM ) ,扫描通道光谱学(圣) ,和原子力量显微镜学(AFM ) 。没有破坏 graphene overlayer 的水晶的顺序或改变做水平的搬运人,底层的氧化在底层生产了可估计的折皱。我们以 graphene 层的折皱导致的张力的紧张解释拉曼频率的红移动。在有氧化的拉曼紧张的变化从对在散布过程的拉曼结合 graphene 层的光的效率的薄亚铜的氧化物电影的影响产生。XiuliYin Yilei Li Fen Ke Chenfang Lin Huabo Zhao Lin Gan Zhengtang Luo Ruguang Zhao Tony F. Heinz Zonghai Hu 2014Nano Research2014,7,11:1
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