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Shot noise and electronic properties in the inversion-symmetric Weyl semimetal resonant structure

机译:射击噪声和电子性质在反转对称的Weyl半谐振结构中

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Using the transfer matrix method, the authors combine the analytical formula with numerical calculation to explore the shot noise and conductance of massless Weyl fermions in the Weyl semimetal resonant junction. By varying the barrier strength, the structure of the junction, the Fermi energy, and the crystallographic angle, the shot noise and conductance can be tuned efficiently. For a quasiperiodic superlattice, in complete contrast to the conventional junction case, the effect of the disorder strength on the shot noise and conductance depends on the competition of classical tunneling and Klein tunneling. Moreover, the delta barrier structure is also vital in determining the shot noise and conductance. In particular, a universal Fano factor has been found in a single delta potential case, whereas the resonant structure of the Fano factor perfectly matches with the number of barriers in a delta potential superlattice. These results are crucial for engineering nanoelectronic devices based on this topological semimetal material.
机译:使用传递矩阵方法,作者将分析配方与数值计算结合,以探索威尔半型共振结中无麻的探测噪声和电导。通过改变阻挡强度,可以有效地调整结晶能,费米能量和晶体的结构和晶体的结构。对于QuaSiperiodic超晶格,与传统接线箱完全对比,紊乱强度对射击噪声和电导的影响取决于古典隧道和克莱林隧道的竞争。此外,Delta屏障结构在确定射击噪声和电导方面也至关重要。特别地,在单个Δ潜在壳体中发现了通用的Fano因子,而Fano因子的谐振结构与三角潜能超晶格中的障碍物的数量完全匹配。这些结果对于基于这种拓扑半型材料的工程纳米电子器件至关重要。

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