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Quantum transport in graphene p-n junctions with moiré superlattice modulation

机译:莫尔超晶格调制在石墨烯p-n结中的量子输运

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摘要

We present simulations of quantum transport in graphene p-n junctions (pnJs) in which moiré superlattice potentials are incorporated to demonstrate the interplay between pnJs and moiré superlattice potentials. It is shown that the longitudinal and Hall resistivity maps can be strongly modulated by the pnJ profile, junction height, and moiré potentials. Device resistance measurements are subsequently performed on graphene/hexagonal- boron-nitride heterostructure samples with accurate alignment of crystallographic orientations to complement and support the simulation results.
机译:我们目前的量子传输在石墨烯p-n结(pnJs)中的模拟,其中莫尔超晶格势被纳入以证明pnJs和莫尔超晶格势之间的相互作用。结果表明,纵向和霍尔电阻率图可以通过pnJ轮廓,结高和莫尔电位来强烈调节。随后在石墨烯/六方氮化硼硼异质结构样品上进行器件电阻测量,并精确对准晶体取向,以补充和支持模拟结果。

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