Noncollinear magnetic ordering in a frustrated magnet: Metallic regime and the role of frustration

Munir Shahzad and Pinaki Sengupta
Phys. Rev. B 96, 224402 – Published 1 December 2017

Abstract

We explore the magnetic phases in a Kondo lattice model on the geometrically frustrated Shastry-Sutherland lattice at metallic electron densities, searching for noncollinear and noncoplanar spin textures. Motivated by experimental observations in many rare-earth-based frustrated metallic magnets, we treat the local moments as classical spins and set the coupling between the itinerant electrons and local moments as the largest energy scale in the problem. Our results show that a noncollinear flux state is stabilized over an extended range of Hamiltonian parameters. These spin states can be quenched efficiently by external fields like temperature and magnetic field as well as by varying the degree of frustration in the electronic itinerancy and exchange coupling between local moments. Interestingly, unlike insulating electron densities that we discussed in paper I of this sequence, a Dzyaloshinskii-Moriya interaction between the local moments is not essential for the emergence of their noncollinear ordering.

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  • Received 15 January 2017
  • Revised 6 November 2017

DOI:https://doi.org/10.1103/PhysRevB.96.224402

©2017 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

Munir Shahzad and Pinaki Sengupta

  • School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore 637371, Singapore

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Issue

Vol. 96, Iss. 22 — 1 December 2017

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