Competing interactions and emerging phases in low-spin d<sup>5</sup> perovskites: Bulk and Ultrathin Films
ORAL
Abstract
Due to the delicate interplay between onsite Coulomb repulsion (U) and spin-orbit coupling (SOC), the 4d and 5d transition metal oxides have emerged out as exotic quantum materials. By performing SOC tunable DFT+U calculations supplemented with a multi-orbital Hubbard model, on bulk and thin films of the prototype system SrIrO3, we present eight electronic and magnetic phases in the U-SOC space that can be observed in the family of low-spin bulk d5 perovskites. With reduced dimensionality, we observe six unique phases. Specifically, the film terminated by IrO2 layers exhibits multiple Dirac states in the weak correlation regime. The films exhibits large magnetic anisotropy energy to become promising candidates for magnetic memory and storage devices.
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Publication: A. Chauhan and B. R. K. Nanda, arXiv:2107.06016 (2021).
Presenters
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Amit Chauhan
Indian Institute of Technology Madras
Authors
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Amit Chauhan
Indian Institute of Technology Madras
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Birabar R Nanda
Indian Institute of Technology Madras