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Flat-Lens Focusing of Electron Beams in Graphene

机译:平镜头在石墨烯的电子束的聚焦

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Coupling electron beams carrying information into electronic units is fundamental in microelectronics. This requires precision manipulation of electron beams through a coupler with a good focusing ability. In graphene, the focusing of wide electron beams has been successfully demonstrated by a circular p-n junction. However, it is not favorable for information coupling since the focal length is so small that the focal spot locates inside the circular gated region, rather than in the background region. Here, we demonstrate that an array of gate-defined quantum dots, which has gradually changing lattice spacing in the direction transverse to propagation, can focus electrons outside itself, providing a possibility to make a coupler in graphene. The focusing effect can be understood as due to the gradient change of effective refractive indices, which are defined by the local energy band in a periodic potential. The strong focusing can be achieved by suitably choosing the lattice gradient and the layer number in the incident direction, offering an effective solution to precision manipulation of electron beams with wide electron energy range and high angular tolerance.
机译:将信息耦合到电子单元中的电子束是微电子的基础。这需要通过具有良好聚焦能力的耦合器进行精确地操纵电子束。在石墨烯中,通过圆形P-N结成功地证明了宽电子束的聚焦。然而,由于焦距如此小,因此焦点位于圆形门控区域内,而不是在背景区域内,因此不利于信息耦合。这里,我们证明了一系列栅极定义的量子点,该栅极定义量子点在横向于传播的方向上逐渐改变晶格间距,可以聚焦外部的电子,从而提供了在石墨烯中制造耦合器的可能性。由于有效折射率的梯度变化,可以理解为焦点效果,这是由局部能带在周期性潜力中定义的。通过适当地选择晶格梯度和入射方向的层数,可以实现强焦的强焦,提供有效的解决方案,以精确地操纵具有宽的电子能量范围和高角度公差。

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