Charge orders with distinct magnetic response in a prototypical kagome superconductor LaRu$_{3}$Si$_{2}$
C. Mielke III, V. Sazgari, I. Plokhikh, S. Shin, H. Nakamura, J.N., Graham, J. K\"uspert, I. Bialo, G. Garbarino, D. Das, M. Medarde, M., Bartkowiak, S.S. Islam, R. Khasanov, H. Luetkens, M.Z. Hasan, E., Pomjakushina, J.-X. Yin, M.H. Fischer, J. Chang, T. Neupert, S. Nakatsuji

TL;DR
This study uncovers two distinct charge orders in LaRu$_{3}$Si$_{2}$, revealing their different magnetic responses and interplay with superconductivity, using advanced diffraction, transport, and muon-spin techniques.
Contribution
It demonstrates the coexistence of a non-magnetic and a time-reversal-symmetry-breaking charge order in LaRu$_{3}$Si$_{2}$, with detailed experimental insights into their properties.
Findings
Discovery of a secondary charge order below 80 K with distinct magnetic response.
Observation of a sign reversal in Hall effect below 35 K.
Enhanced muon spin relaxation indicating magnetic changes below 35 K.
Abstract
The kagome lattice has emerged as a promising platform for hosting unconventional chiral charge order at high temperatures. Notably, in LaRuSi, a room-temperature charge-ordered state with a propagation vector of (,~0,~0) has been recently identified. However, understanding the interplay between this charge order and superconductivity, particularly with respect to time-reversal-symmetry breaking, remains elusive. In this study, we employ single crystal X-ray diffraction, magnetotransport, and muon-spin rotation experiments to investigate the charge order and its electronic and magnetic responses in LaRuSi across a wide temperature range down to the superconducting state. Our findings reveal the emergence of a charge order with a propagation vector of (,~0,~0) below 80 K, coexisting with the previously identified…
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Taxonomy
TopicsRare-earth and actinide compounds · Advanced Condensed Matter Physics · Iron-based superconductors research
