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First principles study and empirical parametrization of twisted bilayer MoS2 based on band-unfolding

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arxiv 1606.01858 v1 pith:75XAAJNQ submitted 2016-06-06 cond-mat.mtrl-sci physics.comp-ph

First principles study and empirical parametrization of twisted bilayer MoS2 based on band-unfolding

classification cond-mat.mtrl-sci physics.comp-ph
keywords bandbilayerstructurestextrmtwistedunfoldedballisticcell
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We explore the band structure and ballistic electron transport in twisted bilayer $\textrm{MoS}_2$ using Density Functional Theory (DFT). The sphagetti like bands are unfolded to generate band structures in the primitive unit cell of the original un-twisted $\textrm{MoS}_2$ bilayer and projected onto an individual layer. The corresponding twist angle dependent indirect bandedges are extracted from the unfolded band structures. Based on a comparison within the same primitive unit cell, an efficient two band effective mass model for indirect conduction and valence valleys is created and parameterized by fitting the unfolded band structures. With the two band effective mass model, transport properties - specifically, we calculate the ballistic transmission in arbitrarily twisted bilayer $\textrm{MoS}_2$.

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