Complete miscibility amongst AV3Sb5 kagome superconductors: design of mixed A-site AV3Sb5 (A: K, Rb, Cs) alloys

Abstract

In this work we explore the chemical-property phase diagram of the AV3Sb5 family through A-site alloying. We demonstrate full miscibility of the alkali-site, highlighting that the three parent compounds are the terminal ends of a single solid-solution. Using both polycrystalline and single crystal methods, we map the dependence of the two primary electronic instabilities: (1) the onset of charge density wave (CDW) order (TCDW) and (2) the onset of superconductivity (Tc) with alkali-site composition. We show continuous trends in both TCDW and Tc, including a region of enhanced CDW stability in K1-xCsxV3Sb5 alloys. Together, our results open new routes for chemical perturbation and exploration of the chemical-property relationships in the class of AV3Sb5 kagome superconductors.

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