Ohwada K, Fujii Y, Takesue N, Isobe M, Ueda Y, Nakao H, Wakabayashi Y, Murakami Y, Ito K, Amemiya Y, Fujihisa H, Aoki K, Shobu T, Noda Y, Ikeda N
Neutron Scattering Laboratory, Institute for Solid States Physics, The University of Tokyo, 106-1 Shirakata, Tokai, 319-1106, Japan.
Phys Rev Lett. 2001 Aug 20;87(8):086402. doi: 10.1103/PhysRevLett.87.086402. Epub 2001 Aug 7.
The "devil's staircase"-type phase transition in the quarter-filled spin-ladder compound NaV2O5 has been discovered at low temperature and high pressure by synchrotron radiation x-ray diffraction. A large number of transitions are found to successively take place among higher-order commensurate phases with 2a x 2b x zc type superstructures. The observed temperature and pressure dependence of modulation wave number q(c), defined by 1/z, is well reproduced by the axial next nearest neighbor Ising model. The q(c) is suggested to reflect atomic displacements presumably coupled with charge ordering in this system.
通过同步辐射X射线衍射,在低温高压下发现了四分之一填充的自旋梯子化合物NaV₂O₅中的“魔鬼阶梯”型相变。发现大量转变在具有2a×2b×zc型超结构的高阶相称相之间相继发生。由1/z定义的调制波数q(c)的观测温度和压力依赖性,由轴向次近邻伊辛模型很好地再现。q(c)被认为反映了该系统中可能与电荷有序耦合的原子位移。