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Tuning the Exotic Quantum Phase of EuA<sub>2</sub>X<sub>2</sub> (A = Cd, Zn, Mg, Sb; X = As, P) by using Chemical substitution.

ORAL

Abstract

Intrinsic magnetic topological materials (IMTMs) are promising for next-generation spintronics applications. These materials exhibit topologically protected exotic states relevant to their functionality, which can be further enhanced by tuning their topology and magnetism. Among the different classes of IMTMs, EuCd2P2 family has been observed to present unique responses in its electrical resistivity. Here, using first-principles, density-functional theory based modeling, we explore the electronic structures of EuA2X2 (A = Cd, Zn, Mg, Sb; X = As, P). Our calculations reveal that 3d and 4f orbital localization plays a key role in controlling the bandgap and the electronic states near the Fermi level in this materials family. We show that topological properties can be tuned via chemical substitutions and are not sensitive to spin-orbit coupling effects. Our study highlights the complex relationship between the topology and chemistry of this materials family.

Presenters

  • Gadeer Alqasseri

    Howard university

Authors

  • Gadeer Alqasseri

    Howard university

  • Barun Ghosh

    Northeastern University, Boston, USA, Department of Physics, Northeastern University, USA

  • Arun Bansil

    Northeastern University, Department of Physics, Northeastern University, USA

  • Fazel Tafti

    Boston College

  • Bahadur Singh

    Tata Institute of Fundamental Research, Tata Institute for Fundamental Research, TIFR, Tata Institute of Fundamental Research, Mumbai, Department of Condensed Matter Physics and Materials Science, Tata Institute of Fundamental Research, Mumbai, India

  • Sugata Chowdhury

    Howard University, Howard university