4.6 Article

Understanding magnetic focusing in graphene p-n junctions through quantum modeling

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PHYSICAL REVIEW B
卷 95, 期 15, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.95.155433

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  1. U.S. Naval Research Laboratory [N00173-14-1-G017]

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We present a quantum model which provides enhanced understanding of recent transverse magnetic focusing experiments on graphene p-n junctions. Spatially resolved flow maps of local particle current density show quantum interference and p-n junction filtering effects, which are crucial to explaining the device operation. The Landauer-Buttiker formula is used alongside dephasing edge contacts to give exceptional agreement between simulated nonlocal resistance and the recent experiment by Chen et al. [Science 353, 1522 ( 2016)]. The origin of positive and negative focusing resonances and off-resonance characteristics are explained in terms of quantum transmission functions. Our model also captures subtle features from experiment, such as the p-p-to p-p+ transition and the second p-n focusing resonance.

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