Fig. 3 Temperature-dependent heat capacity of YbTM2Zn20.

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Fig. 3 Temperature-dependent heat capacity of YbTM2Zn20. Temperature-dependent heat capacity of YbTM2Zn20. (A) YbCo2Zn20. (B) YbRh2Zn20. (C) YbIr2Zn20. Solid lines representing the fitting using a combined Debye-Einstein model: CP=CD(TθD)3∫0θD/Tx4ex(ex−1)2dx+CE(θET)2eθE/T(eθE/T−1)2, where CD and CE are constants containing numbers of oscillators and degrees of freedom, respectively (28). The insets show Cp/T versus T2 data at low temperatures, with the solid lines representing the Cp/T = γ + βT2 relation. Kaya Wei et al. Sci Adv 2019;5:eaaw6183 Copyright © 2019 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC).