论文标题
通过连贯的谐振磁X射线光谱法直接测量超过自旋玻璃过渡的时间相关性
Direct measurement of temporal correlations above the spin-glass transition by coherent resonant magnetic x-ray spectroscopy
论文作者
论文摘要
在1970年代,引入了一种新的范式,即相互作用的淬火系统(例如旋转玻璃)具有相变,在该系统中,在没有空间相关性的情况下实现了空间模式的长时间记忆。研究旋转玻璃过渡的主要方法(除了一些精致且优雅的理论结构外,还包括计算机模拟和中子自旋回波测量值。我们在这里表明,旋转玻璃过渡的动态相关性在很长时间内嵌入了四旋旋转相关性的测量中。该信息直接在强度的时间相关性中可用,该强度编码自旋方向记忆,通过谐振磁X射线光子相关光谱(RM-XPC)获得的旋转方向记忆。我们已经实施了这种方法来观察并准确表征经典金属旋转玻璃合金Cu(MN)在1至1000秒内的旋转方向波动的临界减速。我们的方法为研究旋转冰和量子自旋液体以及结构玻璃跃迁等系统中的相变开辟了道路。
In the 1970s a new paradigm was introduced that interacting quenched systems, such as a spin-glass, have a phase transition in which long time memory of spatial patterns is realized without spatial correlations. The principal methods to study the spin-glass transition, besides some elaborate and elegant theoretical constructions, have been numerical computer simulations and neutron spin echo measurements . We show here that the dynamical correlations of the spin-glass transition are embedded in measurements of the four-spin correlations at very long times. This information is directly available in the temporal correlations of the intensity, which encode the spin-orientation memory, obtained by the technique of resonant magnetic x-ray photon correlation spectroscopy (RM- XPCS). We have implemented this method to observe and accurately characterize the critical slowing down of the spin orientation fluctuations in the classic metallic spin glass alloy Cu(Mn) over time scales of 1 to 1000 secs. Our method opens the way for studying phase transitions in systems such as spin ices, and quantum spin liquids, as well as the structural glass transition.