Ultralow temperature NMR of CeCoIn
arXiv:2004.11730 · doi:10.1103/PhysRevB.102.165154
Abstract
We have performed Co NMR measurements of CeCoIn down to ultralow temperatures. We find that the temperature dependence of the spin-echo intensity provides a good measure of the sample temperature, enabling us to determine a pulse condition not heating up the sample by the NMR pulses down to ultralow temperatures. From the longitudinal relaxation time () measurements at 5 T applied along the axis, a pronounced peak in is observed at 20 mK, implying an appearance of magnetic order as suggested by the recent quantum oscillation measurements [H. Shishido {\it et al.}, Phys. Rev. Lett. {\bf 120}, 177201 (2018)]. On the other hand, the NMR spectrum shows no change below 20 mK. Moreover, the peak in disappears at 6 and 8 T in contrast to the results of the quantum oscillation. We discuss that an antiferromagnetic state with a moment lying in the -- plane can be a possible origin for the peak in at 5 T.
9 pages, 10 figures; (v2) texts and figures updated; (v3) typo fixed, DOI and reference added