Relaxation Effects in Twisted Bilayer Graphene: a Multi-Scale Approach
ORAL
Abstract
We present a multi-scale approach to capture the interdependent atomic and electronic structures of suspended and hexagonal boron nitride (hBN) supported twisted bilayer graphene (tBG) by using rescaled two center interlayer hopping terms to calibrate the flat band magic angle to ∼ 1.08ο, as a way to resolve the indeterminacy of atomic/electronic structure models whose magic angles are bracketed between 0.9ο −1.3ο. We use electronic structrure hopping parameters extracted from density functional local density approximation except for an enhanced Fermi velocity of υF ≈ 106 m/s and atomic force fields informed by stacking and interlayer distance-dependent density functional theory total energies, including systematically improved exact exchange and random phase approximation (EXX+RPA), to calculate the high-resolution spectral functions that can be compared with experimental angle-resolved photoemission spectra (ARPES).
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Presenters
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Nicolas Leconte
Univ of Seoul
Authors
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Nicolas Leconte
Univ of Seoul
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Srivani Javvaji
Univ of Seoul
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Jiaqi An
Univ of Seoul
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Appalakondaiah Samudrala
Univ of Seoul
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Jeil Jung
Univ of Seoul, Physics, University of Seoul, University of Seoul