Flat-band tuning and emergent itinerant magnetism in Sr(Co <sub> 1− <i>x</i> </sub> Pd <sub> <i>x</i> </sub> ) <sub>2</sub> As <sub>2</sub>

S Santanu Pakhira (Ames National Laboratory) Y Yongbin Lee (Ames National Laboratory) A Asish K. Kundu (National Synchrotron Light Source II) F Farhan Islam (Ames National Laboratory) Z Zhenhua Ning (Ames National Laboratory) V Volodymyr Smetana (Department of Biological and Chemical Engineering) A Anja-Verena Mudring (Department of Biological and Chemical Engineering) T Thomas Heitmann (Department of Physics and Astronomy) E Elio Vescovo (National Synchrotron Light Source II) L Liqin Ke (Ames National Laboratory) D David Vaknin (Ames National Laboratory) D David C. Johnston (Ames National Laboratory)

Abstract

The interplay between magnetism and flat-band (FB) instability is a central theme in quantum materials research. A striking example is the emergence of magnetic order in a nominally nonmagnetic compound when a flat band is tuned near the Fermi energy ( E F ). In this study, we investigate this phenomenon in the Pauli paramagnet SrCo 2 As 2 , where an FB associated with Co e g orbitals lies close to E F . Remarkably, a minute substitution of the nonmagnetic element Pd onto the Co site ( ∼ 2%) induces antiferromagnetic order with a transition temperature as high as T N = 25 K. Temperature- and magnetic-field-dependent magnetic and transport measurements, complemented by zero-field neutron diffraction, reveal a helical magnetic order for x ≤ 0.10 in Sr(Co 1− x Pd x ) 2 As 2 , transitioning to a complex ferromagnetic state at higher Pd concentrations. Spectroscopic evidence and theoretical band structure calculations demonstrate that electron doping shifts the flat band closer to E F , significantly enhancing the Stoner parameter. This enhancement drives a strong ferromagnetic instability, leading to helical magnetic ordering dominated by in-plane ferromagnetic interactions. The emergence of robust magnetic ordering through substitution with nonmagnetic elements is a unique phenomenon that underscores the pivotal role of flat-band instability in tuning magnetism in itinerant systems.

Article Details

Volume / Issue Vol. 122, Issue 51
Published December 23, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (12)

S

Santanu Pakhira

Ames National Laboratory

Y

Yongbin Lee

Ames National Laboratory

A

Asish K. Kundu

National Synchrotron Light Source II

F

Farhan Islam

Ames National Laboratory

Z

Zhenhua Ning

Ames National Laboratory

V

Volodymyr Smetana

Department of Biological and Chemical Engineering

A

Anja-Verena Mudring

Department of Biological and Chemical Engineering

T

Thomas Heitmann

Department of Physics and Astronomy

E

Elio Vescovo

National Synchrotron Light Source II

L

Liqin Ke

Ames National Laboratory

D

David Vaknin

Ames National Laboratory

D

David C. Johnston

Ames National Laboratory