Colossal magnetoresistance and anisotropic spin dynamics in the antiferromagnetic semiconductor Eu5⁢Sn2⁢As6

Abstract: 

We report on the thermodynamic and transport properties of the rare-earth Zintl compound Eu5⁢Sn2⁢As6, which orders as a canted antiferromagnetic semiconductor at 10.3 K. The system also displays a complex cascade of magnetic phases arising from geometric and magnetic exchange frustration, with high sensitivity to the application and direction of small magnetic fields. At low temperature, Eu5⁢Sn2⁢As6 exhibits negative colossal magnetoresistance of up to a factor of 6000. This represents a lower bound as the conductivity appears to be shunted by an unknown conduction channel, causing the resistivity to saturate. Mechanisms for the low-temperature saturation of resistivity are discussed.

Author: 
R. P. Day
K. Yamakawa
L. Pritchard Cairns
J. Singleton
W. L. Cao
C. Wu
M. Allen
J. E. Moore
James G. Analytis
Publication date: 
February 3, 2025
Publication type: 
Journal Article