Vaknin D, Zarestky J L, Rivera J-P, Schmid H
Department of Physics and Astronomy, Iowa State University, Ames, Iowa 50011, USA.
Phys Rev Lett. 2004 May 21;92(20):207201. doi: 10.1103/PhysRevLett.92.207201. Epub 2004 May 19.
Neutron scattering studies of single crystal LiNiPO4 reveal a spontaneous first-order commensurate-incommensurate magnetic phase transition. Short- and long-range incommensurate phases are intermediate between the high temperature paramagnetic and the low temperature antiferromagnetic phases. The modulated structure has a predominant antiferromagnetic component, giving rise to satellite peaks in the vicinity of the fundamental antiferromagnetic Bragg reflection, and a ferromagnetic component, giving rise to peaks at small momentum transfers around the origin at (0,+/-Q,0). The wavelength of the modulated magnetic structure varies continuously with temperature. It is argued that the incommensurate short- and long-range phases are due to spin-dimensionality crossover from a continuous to the discrete Ising state.
单晶LiNiPO₄的中子散射研究揭示了一种自发的一级相称-不相称磁相变。短程和长程不相称相介于高温顺磁相和低温反铁磁相之间。调制结构具有一个占主导地位的反铁磁分量,在基本反铁磁布拉格反射附近产生卫星峰,以及一个铁磁分量,在原点(0,±Q,0)附近的小动量转移处产生峰。调制磁结构的波长随温度连续变化。有人认为,不相称的短程和长程相是由于自旋维度从连续的伊辛态到离散的伊辛态的交叉所致。