Hauspurg A, Matsuura K, Arima Taka-Hisa, Zherlitsyn S, Wosnitza J
Hochfeld-Magnetlabor Dresden (HLD-EMFL) and Würzburg-Dresden Cluster of Excellence ct.qmat, Helmholtz-Zentrum Dresden-Rossendorf (HZDR), 01328 Dresden, Germany.
Institut für Festkörper- und Materialphysik, TU Dresden, 01062 Dresden, Germany.
J Phys Condens Matter. 2024 May 13;36(32). doi: 10.1088/1361-648X/ad44fc.
CoNbOis a model system for a spin-1/2 one-dimensional (1D) transverse-field Ising magnet (TFIM) with a rather low three-dimensional (3D) Néel ordering temperature atTN=2.95K. We studied CoNbOusing ultrasound measurements down to 0.3 K in transverse magnetic fields applied along thedirection. Upon entering the 3D ordered state, we observe pronounced anomalies in the transverse acoustic mode. In particular, from 1.3 to 1.5 K and around 4.7 T, this mode reveals an almost diverging softening, which is considerably reduced at lower and higher magnetic fields. We interpret this as an influence of quantum critical fluctuations emerging from the quantum critical point (QCP) of the 1D Ising spin chains at about 4.75 T, which lies below the QCP of the 3D ordering at about 5.4 T. This is clear experimental evidence of the predicted generic phase diagram for a TFIM with superimposed 3D ordering.
CoNbO是一个自旋为1/2的一维(1D)横向场伊辛磁体(TFIM)的模型系统,其三维(3D)奈尔有序温度相当低,为TN = 2.95K。我们在沿该方向施加的横向磁场中,利用超声测量对CoNbO进行了低至0.3K的研究。进入3D有序状态后,我们在横向声模中观察到明显的异常。特别是在1.3至1.5K以及约4.7T时,该模式显示出几乎发散的软化,在较低和较高磁场下这种软化程度会显著降低。我们将此解释为来自约4.75T的1D伊辛自旋链的量子临界点(QCP)出现的量子临界涨落的影响,该点低于约5.4T的3D有序的QCP。这是具有叠加3D有序的TFIM的预测通用相图的明确实验证据。