论文标题
范德华(Van der Waals)抗fiferromagnet中的fermionic秩序
Fermionic Order by Disorder in a van der Waals Antiferromagnet
论文作者
论文摘要
CETE3是一个独特的平台,可以研究范德华(VDW)耦合金属中的迭代磁性。尽管化学压力是在该系统中增加量子波动的有前途的途径,但对CE3+(4F1)状态的化学压力效应的系统研究仍然存在。在这里,我们报告了CETE3的一系列SE掺杂单晶的成功生长。我们发现从通常的易于轴订购到异常的硬轴排序的波动驱动的外来磁旋转。与局部磁系统不同,近乎临界的磁性可以随着磁性波动而齐头并进。因此,通过动力学能量增益出现了看似不稳定的硬轴顺序,并自洽观察到增强的磁波动(无序)。据我们所知,在VDW材料中首次观察到费米子系统中的逐订单过程。我们的发现开设了一个独特的实验平台,用于直接可视化与费米式订购过程相关的丰富准粒子费米表面变形。同样,通过进一步调整量子波动来寻找新兴的外来阶段,这被认为是一个有希望的未来挑战。
CeTe3 is a unique platform to investigate the itinerant magnetism in a van der Waals (vdW) coupled metal. Despite chemical pressure being a promising route to boost quantum fluctuation in this system, a systematic study on the chemical pressure effect on Ce3+(4f1) states is absent. Here, we report on the successful growth of a series of Se doped single crystals of CeTe3. We found a fluctuation driven exotic magnetic rotation from the usual easy-axis ordering to an unusual hard-axis ordering. Unlike in localized magnetic systems, near-critical magnetism can increase itinerancy hand-in-hand with enhancing fluctuation of magnetism. Thus, seemingly unstable hard-axis ordering emerges through kinetic energy gain, with the self-consistent observation of enhanced magnetic fluctuation (disorder). As far as we recognize, this order-by-disorder process in fermionic system is observed for the first time within vdW materials. Our finding opens a unique experimental platform for direct visualization of the rich quasiparticle Fermi surface deformation associated with the Fermionic order-by-disorder process. Also, the search for emergent exotic phases by further tuning of quantum fluctuation is suggested as a promising future challenge.