arXiv · 2205.13663
Elastoresistivity of heavily hole doped 122 iron pnictides superconductors
Abstract
Nematicity in the heavily hole-doped iron pnictide superconductors remains controversial. Sizeable nematic fluctuations and even nematic orders far from a magnetic instability were declared in RbFe$_2$As$_2$ and its sister compounds. Here we report a systematic elastoresistance study of series of isovalent- and electron-doped KFe$_2$As$_2$ crystals. We found divergent elastoresistance upon cooling for all the crystals along their [110] direction. The amplitude of elastoresistivity diverges if K is substituted with larger ions or if the system is driven towards a Lifshitz transition. However, we conclude none of them necessarily indicates an independent nematic critical point. Instead, the increased nematicity can be associated with another electronic criticality. In particular, we propose a mechanism how elastoresistivity is enhanced at a Lifshitz transition.
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Xiaochen Hong, Steffen Sykora, Federico Caglieris, Mahdi Behnami, Igor Morozov, Saicharan Aswartham, Vadim Grinenko, Kunihiro Kihou, Chul-Ho Lee, Bernd Büchner, Christian Hess. 2022-05-26. Elastoresistivity of heavily hole doped 122 iron pnictides superconductors. https://doi.org/10.3389/fphy.2022.853717
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