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Coupling of structure to magnetic and superconducting orders in quasi-one-dimensional K2Cr3As3

K. M. Taddei, Q. Zheng, A. S. Sefat, C. de la Cruz

DOI 10.1103/PhysRevB.96.180506 · Physical Review B

T1

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Abstract

Quasi-one-dimensional A2Cr3As3 (with A=K, Cs, Rb) is an intriguing new family of superconductors which exhibit many similar features to the cuprate and iron-based unconventional superconductor families. Yet, in contrast to these systems, no charge or magnetic ordering has been observed which could provide the electronic correlations presumed necessary for an unconventional superconducting pairing mechanism—an absence which defies predictions of first-principles models. We report the results of neutron scattering experiments on polycrystalline K2Cr3As3 (Tc∼7K) which probed the low-temperature dynamics near Tc. Neutron diffraction data evidence a subtle response of the nuclear lattice to the onset of superconductivity while inelastic scattering reveals a highly dispersive column of intensity at the commensurate wave vector q=0012 which loses intensity beneath Tc—indicative of short-range magnetic fluctuations. Using linear spin-wave theory, we model the observed scattering and suggest a possible structure to the short-range magnetic order. These observations suggest that K2Cr3As3 is in close proximity to a magnetic instability and that the incipient magnetic order both couples strongly to the lattice and competes with superconductivity, in direct analogy with the iron-based superconductors.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
K2Cr3As3

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7Pressure not reportedonset
Rb2Cr3As3

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—Pressure not reportedunknown
Cs2Cr3As3

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—Pressure not reportedunknown

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