Ramification of complex magnetism in Nd$_2$Ir$_2$O$_7$ observed by Raman scattering spectroscopy
Yuanyuan Xu, Yang Yang, J\'er\'emie Teyssier, Takumi Ohtsuki, Yang, Qiu, Satoru Nakatsuji, Dirk van der Marel, Natalia B. Perkins, Natalia, Drichko

TL;DR
This study uses Raman spectroscopy to reveal complex magnetic interactions in Nd$_2$Ir$_2$O$_7$, highlighting the interplay of spin-orbit coupling, electronic correlations, and frustration in its pyrochlore lattice.
Contribution
It uncovers the temperature-dependent magnetic behavior and excitations of Nd and Ir moments, revealing spin ice fluctuations and AIAO order through Raman modes.
Findings
Ir moments order at 33 K with one-magnon modes
Nd moments exhibit spin ice fluctuations between 15 K and 33 K
High-energy magnetic excitations of Nd moments observed
Abstract
Using Raman scattering spectroscopy, we uncover a complex magnetic behavior of NdIrO , which stands out among magnetic pyrochlores by the lowest temperature of the all-in-all-out (AIAO) Ir moments ordering (~K) and the highest temperature at which AIAO order of rare-earth Nd ions is detected (=15~K). Our findings suggest that in the temperature range between 15~K and 33~K, Nd magnetic moments exhibit strong fluctuations, possibly originating from spin ice behavior. This complex behavior emerges from the interplay of strong spin-orbit coupling, electronic correlations, and geometric frustration on two magnetic pyrochlore sublattices of Nd and Ir ions. The ordering of Ir magnetic moments is accompanied by an appearance of one-magnon Raman modes at 26.3 and 29.6 meV compatible with the AIAO order and of a broad mode…
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Taxonomy
TopicsMagneto-Optical Properties and Applications · Advanced Condensed Matter Physics · Magnetic and transport properties of perovskites and related materials
