Ferroquadrupole ordering and Gamma_5 rattling motion in clathrate compound Ce_3Pd_20Ge_6
Yuichi Nemoto, Takashi Yamaguchi, Takenobu Horino, Mitsuhiro Akatsu,, Tatsuya Yanagisawa, Terutaka Goto, Osamu Suzuki, Andreas Donni, Takemi, Komatsubara

TL;DR
This study reveals ferroquadrupole ordering and Gamma_5 rattling motion in Ce_3Pd_20Ge_6, highlighting elastic softening, lattice effects, and off-center tunneling at low temperatures in a cerium-based clathrate.
Contribution
It provides new insights into quadrupole ordering and rattling dynamics in Ce_3Pd_20Ge_6, combining ultrasonic and thermal expansion measurements to uncover novel lattice phenomena.
Findings
Ferroquadrupole ordering occurs below 1.25 K.
Gamma_5 rattling motion is observed around 10 K.
Off-center tunneling state emerges at low temperatures.
Abstract
Lattice effects in a cerium based clathrate compound Ce_3Pd_20Ge_6 with a cubic Cr_23C_6-type structure have been investigated by ultrasonic and thermal expansion measurements. Elastic softenings of (C_11-C_12)/2 and C_44 proportional to the reciprocal temperature 1/T above T_Q1 = 1.25 K are well described in terms of the quadrupole susceptibility for the ground state Gamma_8 quartet. A huge softening of 50 % in (C_11-C_12)/2 and a spontaneous expansion DL/L = 1.9x10^-4 along the [001] direction in particular indicate the ferroquadrupole ordering of O_2^0 below T_Q1. The elastic anomalies associated with the antiferromagnetic ordering at T_N2 = 0.75 K and the incommensurate antiferromagnetic ordering are also found. Notable frequency dependence of C_44 around 10 K is accounted for by the Debye-type dispersion indicating a Gamma_5 rattling motion of an off-center Ce ion along the [111]…
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