Bulletin of the American Physical Society
APS March Meeting 2021
Volume 66, Number 1
Monday–Friday, March 15–19, 2021; Virtual; Time Zone: Central Daylight Time, USA
Session J42: Theory of Twisted Bilayer
3:00 PM–6:00 PM,
Tuesday, March 16, 2021
Sponsoring
Unit:
DCMP
Chair: Michael Zaletel
Abstract: J42.00005 : Higher Order Magic in Twisted Four Layer Graphene*
3:48 PM–4:00 PM
Live
Presenter:
Adam Eaton
(Indiana Univ - Bloomington)
Authors:
Adam Eaton
(Indiana Univ - Bloomington)
Herb Fertig
(Indiana Univ - Bloomington)
Yantao Li
(Indiana Univ - Bloomington)
Babak Seradjeh
(Indiana Univ - Bloomington)
The process of stacking graphene multilayers with a small relative twist angle between each of the layers has been found to produce flat bands at a series of “magic angles.” Recent studies have investigated the effect that varying the number of layers has on the values of the magic angles calculated with identical twist angles. Fixing these angles is necessary for the system to have lattice periodicity, even within the Bistritzer-MacDonald (BM) model. Here, we consider a 4-layer structure with the angles between layers 1-2 and layers 3-4 identical, but with the angle between layers 2-3 unconstrained. Our analysis is made possible by treating the upper/lower bilayers in a low energy theory, with the bilayers coupled via a “higher-order” BM model. The results show that a duality exists between the two types of twist angles: if one pair of twist angles produces a flat band, then swapping the two angles also produces a flat band. This allows significantly larger magic angles than those produced when the twist angles are all the same.
*This work is supported in part by NSF Grant Nos. DMR-1350663, DMR-1914451, and ECCS-1936406, by the US-Israel Binational Foundation, and the Research Corporation for Science Advancement through a Cottrell SEED grant.
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