Interplay of ferromagnetic and antiferromagnetic interactions in epitaxial Co3ZnN

S Sita Dugu (Materials Sciences Center, National Laboratory of the Rockies 1 , Golden, Colorado 80401,) S Sharad Mahatara (Materials Sciences Center, National Laboratory of the Rockies 1 , Golden, Colorado 80401,) C Corlyn E. Regier (Department of Chemistry, Colorado State University 2 , Fort Collins, Colorado 80523-1872,) J James R. Neilson (Colorado State University , , , ,) S Stephan Lany (Materials, Chemical, and Computational Sciences Directorate) R Rebecca W. Smaha (Materials, Chemical, and Computational Sciences Directorate) S Sage R. Bauers (Materials Sciences Center, National Laboratory of the Rockies 1 , Golden, Colorado 80401,)

Abstract

Antiperovskite nitrides with the general formula M3AN have attracted significant attention due to their tunable electronic and magnetic properties. Among them are many cobalt-based compounds predicted to exhibit high thermodynamic stability and intriguing magnetic behavior. Here, we report the synthesis and magnetic characterization of epitaxial Co3ZnN thin films grown by radio frequency sputtering on SrTiO3 (STO) and MgO substrates. X-ray diffraction confirms phase-pure (00l)-oriented films with cube-on-cube epitaxy on STO, with a c-lattice parameter of 3.752 Å. Magnetic measurements reveal clear hysteresis at 2 K with a coercive field of ∼0.11 T and a small net moment of 0.108 μB/f.u., suggesting either a canted antiferromagnetic (AFM) or ferrimagnetic (FiM) configuration. Temperature-dependent magnetization measurements show a transition near 25 K, with strong AFM interactions with Curie–Weiss temperature (Θ) = −80.13 K. Complementary density functional theory and Monte Carlo simulations indicate a ferromagnetic (FM) ground state, with the FM–AFM energy difference decreasing systematically with increasing supercell size, consistent with competition between FM and AFM/FiM interactions. These results highlight Co3ZnN as a magnetically complex antiperovskite nitride with competing exchange interactions.

Article Details

Volume / Issue Vol. 128, Issue 20
Published May 18, 2026
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (7)

S

Sita Dugu

Materials Sciences Center, National Laboratory of the Rockies 1 , Golden, Colorado 80401,

S

Sharad Mahatara

Materials Sciences Center, National Laboratory of the Rockies 1 , Golden, Colorado 80401,

C

Corlyn E. Regier

Department of Chemistry, Colorado State University 2 , Fort Collins, Colorado 80523-1872,

J

James R. Neilson

Colorado State University , , , ,

S

Stephan Lany

Materials, Chemical, and Computational Sciences Directorate

R

Rebecca W. Smaha

Materials, Chemical, and Computational Sciences Directorate

S

Sage R. Bauers

Materials Sciences Center, National Laboratory of the Rockies 1 , Golden, Colorado 80401,