Physical properties and electronic structure of Sr$_2$Cr$_3$As$_2$O$_2$ containing CrO$_2$ and Cr$_2$As$_2$ square-planar lattices
Hao Jiang, Jin-Ke Bao, Hui-Fei Zhai, Zhang-Tu Tang, Yun-Lei Sun, Yi, Liu, Zhi-Cheng Wang, Hua Bai, Zhu-An Xu, and Guang-Han Cao

TL;DR
This study investigates the physical properties and electronic structure of Sr$_2$Cr$_3$As$_2$O$_2$, revealing magnetic transitions, electronic behavior, and potential for superconductivity in a layered chromium oxypnictide.
Contribution
The paper presents the synthesis, magnetic, and electronic characterization of Sr$_2$Cr$_3$As$_2$O$_2$, including first-principles calculations, highlighting its magnetic structure and potential as a superconductor candidate.
Findings
Exhibits metallic conduction with electron-magnon scattering.
Displays two magnetic transitions at 291 K and 38 K.
Electronic structure suggests potential for superconductivity.
Abstract
We report the physical properties and electronic structure calculations of a layered chromium oxypnictide, SrCrAsO, which crystallizes in a SrMnAsO-type structure containing both CrO planes and CrAs layers. The newly synthesized material exhibits a metallic conduction with a dominant electron-magnon scattering. Magnetic and specific-heat measurements indicate at least two intrinsic magnetic transitions below room temperature. One is an antiferromagnetic transition at 291 K, probably associated with a spin ordering in the CrAs layers. Another transition is broad, occurring at around 38 K, and possibly due to a short-range spin order in the CrO planes. Our first-principles calculations indicate predominant two-dimensional antiferromagnetic exchange couplings, and suggest a KG-type (i.e. KNiF type for CrO planes and G type…
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