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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Energy losses and transition radiation in graphene traversed by a fast charged particle under oblique incidence
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Energy losses and transition radiation in graphene traversed by a fast charged particle under oblique incidence

机译:倾斜入射下快速带电粒子穿过的石墨烯中的能量损失和跃迁辐射

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摘要

We perform fully relativistic calculations of the energy loss channels for a charged particle traversing a single layer of graphene under oblique incidence in a setting pertinent to a scanning transmission electron microscope (STEM), where we distinguish between the energy deposited in graphene in the form of electronic excitations (Ohmic loss) and the energy emitted in the far field in the form of transition radiation (TR). Our formulation of the problem uses a definition of two in-plane, dielectric functions of graphene, which describe the longitudinal and transverse excitation processes that contribute separately to those two energy loss channels. Using several models for the electric conductivity of graphene as the input in those dielectric functions enables us to discuss the effects of oblique incidence on several processes in a broad range of frequencies, from the terahertz (THz) to the ultraviolet (UV). In particular, at the THz frequencies, we demonstrate that the nonlocal effect in the graphene's conductivity is not important in the retarded regime, and we show that the longitudinal and transverse contributions to the emitted TR spectra exhibit strongly anisotropic angular patterns that are readily distinguishable in a cathodoluminescence measurement in a STEM. Moreover, we explore the possibility of exciting the so-called transverse mode in the optical response of graphene at the mid-infrared (MIR) range of frequencies by means of a fast charged particle under oblique incidence. Finally, we demonstrate that, aside from the usual high-energy peaks in the longitudinal contribution to the Ohmic energy loss in the MIR to the UV frequency range, there may arise strongly directional features in the in-plane distribution of the transverse contribution to the Ohmic energy loss for an oblique trajectory, which could be possibly observed via momentum-and angle-resolved electron energy loss spectroscopy of graphene in STEM.
机译:在与扫描透射电子显微镜(STEM)有关的设置中,我们对倾斜入射下穿过石墨烯单层的带电粒子的能量损失通道进行了完全相对论的计算,在其中我们区分了以下列形式沉积在石墨烯中的能量:电子激发(欧姆损耗),并以过渡辐射(TR)的形式在远场中发射能量。我们对问题的表述使用了石墨烯的两个面内介电函数的定义,该函数描述了分别对这两个能量损失通道起作用的纵向和横向激发过程。使用几个模型将石墨烯的电导率用作这些介电函数的输入,使我们能够讨论斜入射在太赫兹(THz)到紫外(UV)的宽频率范围内对多个过程的影响。特别是,在太赫兹频率下,我们证明了石墨烯电导率的非局域效应在延迟状态下并不重要,并且我们证明了对发射的TR谱的纵向和横向贡献表现出很强的各向异性角模式,在图2中可以轻易地区分。 STEM中的阴极发光测量。此外,我们探索了通过斜入射下的快速充电粒子在中红外(MIR)频率范围内激发石墨烯光学响应中所谓的横向模式的可能性。最后,我们证明,除了通常的高能峰在纵向上对MIR到紫外频率范围内的欧姆能量损失的纵向贡献外,在横向上对能量的横向贡献的面内分布中可能会出现强烈的方向性特征。倾斜轨迹的欧姆能量损失,可以通过STEM中石墨烯的动量和角度分辨电子能量损失谱来观察。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2018年第19期|195410.1-195410.19|共19页
  • 作者单位

    Univ Waterloo Dept Appl Math Waterloo ON N2L 3G1 Canada;

    Comis Nacl Energia Atom Ctr Atom Bariloche Av Bustillo 9500 RA-8400 San Carlos De Bariloche Argentina|Consejo Nacl Invest Cient & Tecn Buenos Aires DF Argentina;

    Univ Waterloo Dept Appl Math Waterloo ON N2L 3G1 Canada|Univ Waterloo Waterloo Inst Nanotechnol Waterloo ON N2L 3G1 Canada;

    Comis Nacl Energia Atom Ctr Atom Bariloche Av Bustillo 9500 RA-8400 San Carlos De Bariloche Argentina|Univ Nacl Cuyo Inst Balseiro RA-8400 San Carlos De Bariloche Argentina|Consejo Nacl Invest Cient & Tecn Buenos Aires DF Argentina;

    Comis Nacl Energia Atom Ctr Atom Bariloche Av Bustillo 9500 RA-8400 San Carlos De Bariloche Argentina|Univ Nacl Cuyo Inst Balseiro RA-8400 San Carlos De Bariloche Argentina;

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