论文标题
电子 - 抗铁磁磁通耦合引起的巨大带状重归于和石膏铁磁性
Colossal band renormalization and stoner ferromagnetism induced by electron-antiferromagnetic-magnon coupling
论文作者
论文摘要
电子与抗磁磁镁(AFMM)之间的相互作用对于大类相关材料很重要。例如,它们是高温超导体(例如丘比特)和铁质体中最合理的配对胶。但是,与电子相互作用(EPIS)不同,关于电子相互作用(EAIS)如何影响频带结构的明确观察结果仍然缺乏。因此,关于EAI的重要信息,例如其力量和掺杂依赖性,仍然难以捉摸。在这里,我们直接观察到EAIS在Ba $ _ {1-X} $ K $ _X $ _x $ _2 $ as $ _2 $中诱导频段分散体中的扭结结构,随后公布了EAIS的几个关键特征。我们发现,EAI的耦合常数可以高达6,并且显示出巨大的兴奋剂依赖性和温度依赖性,这与EPI的行为以及我们当前对EAIS的理解之外的行为形成了鲜明的对比。 EAIS对电子频段的巨大重新归一化将系统驱动到Stoner标准,从而在Ba $ _ {1-x} $ k $ _x $ _X $ MN $ _2 $ as $ _2 $中提供了有趣的铁磁状态。我们的结果扩大了当前对EAI的知识,这可能有助于进一步理解EAIS发挥关键作用的许多相关材料,例如高温超导体。
The interactions between electrons and antiferromagnetic magnons (AFMMs) are important for a large class of correlated materials. For example, they are the most plausible pairing glues in high-temperature superconductors, such as cuprates and iron pnictides. However, unlike electron-phonon interactions (EPIs), clear-cut observations regarding how electron-AFMM interactions (EAIs) affect the band structure are still lacking. Consequently, critical information on the EAIs, such as its strength and doping dependence, remains elusive. Here we directly observe that EAIs induces a kink structure in the band dispersion in Ba$_{1-x}$K$_x$Mn$_2$As$_2$, and subsequently unveil several key characteristics of EAIs. We found that the coupling constant of EAIs can be as large as 6, and it shows huge doping dependence and temperature dependence, all in stark contrast to the behaviors of EPI and beyond our current understanding of EAIs. Such a colossal renormalization of electronic bands by EAIs drives the system to the Stoner criteria, giving the intriguing ferromagnetic state in Ba$_{1-x}$K$_x$Mn$_2$As$_2$. Our results expand the current knowledge of EAIs, which may facilitate the further understanding of many correlated materials where EAIs play a critical role, such as high-temperature superconductors.