论文标题
干净的磁性晶体中的动态分形和异常噪声
Dynamical fractal and anomalous noise in a clean magnetic crystal
论文作者
论文摘要
分形(具有非全能维度的物体)出现在自然界中的多种设置和长度尺度中,范围从雪花和闪电袭击到自然海岸线。已经花费了很多精力来生成分形用于多体物理学。在这里,我们在热力学平衡中确定了无序的化学计量计量计量计量学三维磁晶体中的新兴动力分形。该现象是源自对旋转冰中磁单极激发动力学的约束,这将它们限制在分形上移动。该观察结果解释了在磁噪声实验中发现的异常指数,在旋转冰层中发现了$ _2 $ _2 $ _2 $ o $ $ _7 $,并且它在其迅速不同的放松时间方面解决了一个长期的难题。自旋冰表现出这种惊人现象的能力在甚至简单的拓扑多体系统的合作动力学中有望进一步令人惊讶。
Fractals -- objects with non-integer dimensions -- occur in manifold settings and length scales in nature, ranging from snowflakes and lightning strikes to natural coastlines. Much effort has been expended to generate fractals for use in many-body physics. Here, we identify an emergent dynamical fractal in a disorder-free, stoichiometric three-dimensional magnetic crystal in thermodynamic equilibrium. The phenomenon is born from constraints on the dynamics of the magnetic monopole excitations in spin ice, which restrict them to move on the fractal. This observation explains the anomalous exponent found in magnetic noise experiments in the spin ice compound Dy$_2$Ti$_2$O$_7$, and it resolves a long standing puzzle about its rapidly diverging relaxation time. The capacity of spin ice to exhibit such striking phenomena holds promise of further surprising discoveries in the cooperative dynamics of even simple topological many-body systems.