Ionic size and atomic disorder effects on the charge-density-wave transitions inR5Ir4Si10(R=Dy−Lu)
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.67.195101/fulltext
Reference27 articles.
1. Superconductivity and electronic instability at high pressure inSc5Co4Si10-type compounds
2. Electronic phase transition and partially gapped Fermi surface in superconductingLu5Ir4Si10
3. Low-temperature heat-capacity study of superconducting ternary silicides and germanides with theSc5Co4Si10-type structure
4. Thermal-expansion measurements forLu5Ir4Si10,Lu5Rh4Si10,Sc5Ir4Si10, andTm5Ir4Si10: Charge-density-wave effects
5. Phase transitions in the superconducting compoundLu5Rh4Si10at ambient and high pressure
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3. Nodeless time-reversal symmetry breaking in the centrosymmetric superconductor Sc5Co4Si10 probed by muon-spin spectroscopy;Physical Review Materials;2022-06-15
4. Modulated crystal structure of the atypical charge density wave state of single-crystal Lu2Ir3Si5;Physical Review B;2021-08-24
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