Bulletin of the American Physical Society
APS March Meeting 2018
Volume 63, Number 1
Monday–Friday, March 5–9, 2018; Los Angeles, California
Session K10: Dirac/Weyl Semimetals -- Magnetism
8:00 AM–11:00 AM,
Wednesday, March 7, 2018
LACC
Room: 301B
Sponsoring
Units:
DMP GMAG
Chair: Fazel Tafti, Universite de Sherbrooke
Abstract ID: BAPS.2018.MAR.K10.8
Abstract: K10.00008 : The magnetic analogs of ZrSiS-type materials
9:48 AM–10:00 AM
Presenter:
Leslie Schoop
(Chemistry, Princeton University)
Authors:
Leslie Schoop
(Chemistry, Princeton University)
Andreas Topp
(MPI for solid state research)
Fabio Orlandi
(Rutherford Appleton)
Lukas Muechler
(Chemistry, Princeton University)
Maia Vergniory
(DICP)
Pascal Manuel
(Rutherford Appleton)
Christian Ast
(MPI for solid state research)
Bettina Lotsch
(MPI for solid state research)
exhibit 4fold degeneracies that are protected by non-symmorprhic symmetry below or at the Fermi level [1,2]. In this talk we will
discuss the magnetic analog CeSbTe, and show how magnetism affects the electronic structure [3]. We will show that we can achieve both,
antiferromagnetic and ferromagnetic order in this material, and that depending on the magnetic structure different topological features can be accessed. Importantly, we will show that antiferromagnetic order can add non-symmorphic symmetry elements and thus create 8fold degeneracies that have been associated with new fermions [4]. This extends the number of possible space groups where 8fold degeneracies can be found. We will also discuss the stability limits of the square net structure for different rare earth cations.
[1] Schoop, L.M., et. al, 2016. Nat. comm., 7.
[2] Q. Xu, et. al, 2015 Physical Review B 92, 205310.
[3] Schoop, L.M.et al, 2017. arXiv:1707.03408.
[4] Bradlyn, et. al, 2016. Science, p.aaf5037
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.MAR.K10.8
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