Pressure drives Y-kapellasite toward a spin-liquid phase by suppressing J' through nonlinear Cu–O–Cu angle dependence, with hydrogen geometry strongly modulating exchange couplings.
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Zn substitution stabilizes ferromagnetism in EuMn2Sb2 and induces Weyl nodes near the Fermi level through broken time-reversal and inversion symmetries.
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Ab Initio Investigation of Pressure Effects in the Spin-Liquid Candidate Y-Kapellasite
Pressure drives Y-kapellasite toward a spin-liquid phase by suppressing J' through nonlinear Cu–O–Cu angle dependence, with hydrogen geometry strongly modulating exchange couplings.
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Broken Symmetry-driven Weyl Semimetal Phase in Zn-Substituted EuMn$_2$Sb$_2$
Zn substitution stabilizes ferromagnetism in EuMn2Sb2 and induces Weyl nodes near the Fermi level through broken time-reversal and inversion symmetries.