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Near-room-temperature ferromagnetic ordering in the pressure-induced collapsed-tetragonal phase in SrCo<sub>2</sub>P<sub>2</sub>

ORAL

Abstract

We present high-pressure electrical transport, magnetization, and single-crystal X-ray diffraction data on SrCo2P2. X-ray diffraction shows a transition to a collapsed tetragonal (cT) structure above ~10 GPa, with the resistance measurement revealing a clear transition-like feature up to 260 K. Magnetization, magnetoresistance, and Hall measurements indicate the transition leads to a ferromagnetic ground state. Above ~30 GPa, magnetic ordering vanishes in a first-order-like manner, suggesting SrCo2P2 is another sample of ferromagnetic intermetallic compound that avoids quantum criticality. Density functional theory (DFT) calculations support a first-order transition between tetragonal and cT phases at ~10 GPa and show the emergence of ferromagnetic ordering in the cT phase. SrCo2P2 provides clear evidence that the structural, electronic and magnetic properties associated with the cT transition are strongly entangled and are not only qualitatively captured by our first principles-based calculations but are quantitatively reproduced as well.

Publication: Near-room-temperature ferromagnetic ordering in the pressure-induced collapsed-tetragonal phase in SrCo2P2. S. Huyan, J. Schmidt, A. Valadkhani, H. Wang, Z. Li, A. Sapkota, J. L. Petri, T. J. Slade, R. A. Ribeiro, W. Bi, W. Xie, I. I. Mazin, R. Valenti, S. L. Bud'ko,P. C. Canfield. Under review. arXiv:2411.05981

Presenters

  • Shuyuan huyan

    Ames National Laboratory

Authors

  • Shuyuan huyan

    Ames National Laboratory

  • Juan Schmidt

    Ames National Laboratory

  • Adrian Valadkhani

    Goethe University Frankfurt

  • Haozhe Wang

    Michigan State University

  • Zhuoqi Li

    Ames National Laboratory

  • Aashish Sapkota

    Ames National Laboratory

  • James L Petri

    University of Alabama at Birmingham

  • Tyler J Slade

    Ames National Laboratory

  • Raquel A. Ribeiro

    Iowa State University

  • Wenli Bi

    University of Alabama at Birmingham

  • Weiwei Xie

    Michigan State University

  • Igor I Mazin

    George Mason University

  • Roser Valenti

    Goethe University Frankfurt

  • Sergey L Bud'ko

    Iowa State University

  • Paul C Canfield

    Iowa State University