Neutron Scattering Science Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA.
Proc Natl Acad Sci U S A. 2011 Sep 20;108(38):15693-8. doi: 10.1073/pnas.1107861108. Epub 2011 Sep 6.
Frustrated magnetic systems exhibit highly degenerate ground states and strong fluctuations, often leading to new physics. An intriguing example of current interest is the antiferromagnet on a diamond lattice, realized physically in A-site spinel materials. This is a prototypical system in three dimensions where frustration arises from competing interactions rather than purely geometric constraints, and theory suggests the possibility of unusual magnetic order at low temperature. Here, we present a comprehensive single-crystal neutron scattering study of CoAl(2)O(4), a highly frustrated A-site spinel. We observe strong diffuse scattering that peaks at wavevectors associated with Néel ordering. Below the temperature T(∗) = 6.5 K, there is a dramatic change in the elastic scattering lineshape accompanied by the emergence of well-defined spin-wave excitations. T(∗) had previously been associated with the onset of glassy behavior. Our new results suggest instead that T(∗) signifies a first-order phase transition, but with true long-range order inhibited by the kinetic freezing of domain walls. This scenario might be expected to occur widely in frustrated systems containing first-order phase transitions and is a natural explanation for existing reports of anomalous glassy behavior in other materials.
受挫磁体系统表现出高度简并的基态和强烈的涨落,这往往会导致新的物理现象。当前引人关注的一个有趣例子是金刚石晶格上的反铁磁体,在 A 位尖晶石材料中得到了物理实现。这是一个典型的三维体系,其中的受挫来自于竞争相互作用而不是纯粹的几何约束,理论预测低温下可能存在异常的磁序。在这里,我们对高度受挫的 A 位尖晶石 CoAl(2)O(4)进行了全面的单晶中子散射研究。我们观察到强烈的漫散射,其峰值与奈尔有序相关的波矢相对应。在温度 T(∗) = 6.5 K 以下,弹性散射谱线形状发生剧烈变化,同时出现了明确定义的自旋波激发。T(∗) 以前与玻璃态行为的开始有关。我们的新结果表明,T(∗)标志着一级相变,但由于畴壁的动力学冻结抑制了真正的长程有序。这种情况可能在包含一级相变的受挫系统中广泛存在,并且是对其他材料中异常玻璃态行为的现有报告的自然解释。