Alloying magnetic metals in “2D”: from old wisdom to new physics
Speaker: Dr. Yu He
Affiliation: Yale University
Date: September 18, 2026
Abstract:
Transition metal chalcogenide is a key host for van der Waals (vdW) magnets, many
of which maintain magnetism down to the thin layer limit. Recent discovery of tunable
ferromagnetism between 50-500K in vdW (Fe,Ni)5GeTe2 raised the question of how this
is achieved, and how they differ (if at all) from elemental magnetic thin films. Motivated
by the uncanny resemblance between the (Ni,Fe)5GeTe2 and Ni-Fe alloy phase diagrams,
we combine spin- and angle-resolved photoemission spectroscopy with operando synchrotron
x-ray diffraction, and show that such group VIII element-rich "high-Tc" vdW magnets
can to some extent be considered "atomically encapsulated" magnetic alloys. However,
their distinct magnetic site-selectivity, cross vdW gap interaction, and mesoscopic
strain enable unique flexibility behind the robust magnetism. I will also discuss
our recent effort to introduce magnetic fields into photoemission sample environments
via magnetic metamaterial hetero-integration, paving way for in situ controlled magnetic
material investigations.
[1] Werner, in preparation
[2] Li, J Phys Chem Lett 16, 12947 (2025)