Nd-based pyrochlore oxides of the form Nd 2 B 2 O 7 have garnered a significant amount of interest owing to the moment fragmentation physics observed in Nd 2 Zr 2 O 7 and speculated in Nd 2 Hf 2 O 7 . Notably this phenomenon is not ubiquitous in this family, as it is absent in Nd 2 Sn 2 O 7 , which features a smaller ionic radius on the B site. Here, we explore the necessary conditions for moment fragmentation in the Nd pyrochlore family through a detailed study of the mixed B-site pyrochlore Nd 2 GaSbO 7 . The B site of this system is characterized by significant disorder and an extremely small average ionic radius. Similarly to Nd 2 Sn 2 O 7 , we find no evidence for moment fragmentation through our bulk characterization and neutron scattering experiments, indicating that chemical pressure (and not necessarily the B-site disorder) plays a key role in the presence or absence of this phenomenon in this material family. Surprisingly, the presence of significant B-site disorder in Nd 2 GaSbO 7 does not generate a spin-glass ground state and instead the same all-in-all-out magnetic order identified in other Nd pyrochlores is found here.
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