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Transmission spectrum of electrons through a Thue-Morse graphene superlattice

机译:电子通过Thue-Morse石墨烯超晶格的透射光谱

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摘要

The energy spectra of a Thue-Morse superlattice based on monolayer graphene containing a band gap are studied. The lattice consists of rectangular barriers located along the x axis. It is proposed that aperiodic Thue-Morse modulation be produced by a difference in the gap width in different elements of the superlattice. It is shown that effective splitting of the allowed bands (and, thereby, the formation of a series of gaps) under the influence of the aperiodic factor can be observed with both oblique and normal incidence of an electron wave on the superlattice. The spectra have periodicity that depends on the potential barrier height. In some segments of the spectrum, band splitting follows the Fibonacci inflation rule in each new generation. As in periodic graphene-based superlattices, a gap associated with a superlattice Dirac point is formed in all Thue-Morse generations. Its width depends substantially on the parameters of the problem; at the same time the position of this band on the energy axis depends weakly on the mass term in the hamiltonian and is independent of the superlattice period. The spectra have little dependence on the angle of incidence of the electron wave.
机译:研究了基于带隙单层石墨烯的Thue-Morse超晶格的能谱。晶格由沿x轴定位的矩形障碍组成。提出通过超晶格的不同元件中的间隙宽度的差异来产生非周期性的Thue-Morse调制。结果表明,在非周期性因素的影响下,在超晶格上电子波的倾斜和法向入射时,都可以观察到有效带的有效分裂(从而形成一系列间隙)。光谱的周期性取决于势垒高度。在频谱的某些部分中,每个新一代都遵循斐波那契通货膨胀规则进行频带分割。与基于周期石墨烯的超晶格一样,在所有Thue-Morse世代中都形成了与超晶格Dirac点相关的间隙。它的宽度在很大程度上取决于问题的参数。同时,该能带在能量轴上的位置在很大程度上取决于哈密顿量中的质量项,并且与超晶格周期无关。光谱对电子波的入射角几乎没有依赖性。

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