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Josephson-like currents in graphene for arbitrary time-dependent potential barriers

机译:石墨烯中约瑟夫森样电流可用于任意随时间变化的势垒

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摘要

From the exact solution of the Dirac-Weyl equation we find unusual currents jy running in y-direction parallel to a time-dependent scalar potential barrier W(x,t) placed upon a monolayer of graphene, even for vanishing momentum component py. In their sine-like dependence on the phase difference of wave functions, describing left and right moving Dirac fermions, these currents resemble Josephson currents in superconductors, including the occurance of Shapiro steps at certain frequencies of potential oscillations. The Josephson-like currents are calculated for several specific time-dependent barriers. A novel type of resonance is discovered when, accounting for the Fermi velocity, temporal and spatial frequencies match.
机译:从Dirac-Weyl方程的精确解中,我们发现在y方向上流动的异常电流jy平行于放置在石墨烯单层上的随时间变化的标量势垒W(x,t),即使动量分量py消失了。这些电流类似于波函数的相位差的正弦依赖关系,描述了左移和右移的狄拉克费米子,这些电流类似于超导体中的约瑟夫森电流,包括在某些潜在振荡频率处出现了Shapiro阶跃。对于几个特定的​​时间相关势垒,计算出类似于约瑟夫森的电流。当考虑费米速度,时空频率匹配时,发现了一种新型的共振。

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