Annealing Effects and Insulator-to-Metal Transition in Nb Doped Sr2IrO4

Hui Huang, Bingzheng Wang, Senlin Zhao,Hui Han, Junfeng Wang,Hao Zu

Journal of Low Temperature Physics(2024)

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Abstract
The effects of vacuum and oxygen annealing on Sr2-xNbxIrO4 samples have been systematically investigated. The annealing under vacuum leads to an enhanced insulating state of the Sr2-xNbxIrO4 compounds, which could be due to the evaporation of oxygen atoms which breaks the superexchange interaction between Ir and O ions. The annealing under oxygen atmosphere results in substantial straightening of the in-plane Ir–O–Ir bond and rapid depression of the canted antiferromagnetic ordering state. Importantly, the insulator-to-metal transition has been achieved by oxygen annealing of the Sr2-xNbxIrO4 samples, which could be due to the enhanced hybridization of Ir 5d orbitals with the neighboring O 2p orbitals. The present results suggest that the annealing treatment could be an effective way for exploring of novel physical phenomena in Sr2IrO4 and related compounds.
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Key words
Annealing effect,Metal-to-insulator transition,Irridate,Carrier density
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