Abstract
The linear and nonlinear ac susceptibility measurements of Yb-pyrochlores, Yb2X2O7 (X=Sn, Ti, and Ge), show transitions with a ferromagnetic nature at 0.13 and 0.25 K for Yb2Sn2O7 and Yb2Ti2O7, respectively, and an antiferromagnetic ordering at 0.62 K for Yb2Ge2O7. These systematical results (i) provided information about the nature of the unconventional magnetic ground state in Yb2Ti2O7; (ii) realized a distinct antiferromagnetic ordering state in Yb2Ge2O7; and (iii) demonstrated that the application of chemical pressure through the series of Yb-pyrochlores can efficiently perturb the fragile quantum spin fluctuations of the Yb3+ ions and lead to very different magnetic ground states. © 2014 American Physical Society.
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CITATION STYLE
Dun, Z. L., Lee, M., Choi, E. S., Hallas, A. M., Wiebe, C. R., Gardner, J. S., … Cheng, J. G. (2014). Chemical pressure effects on magnetism in the quantum spin liquid candidates Yb2 X2 O7 (X = Sn, Ti, Ge). Physical Review B - Condensed Matter and Materials Physics, 89(6). https://doi.org/10.1103/PhysRevB.89.064401
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