论文标题
在uge2中共存的近代杂交和巡回的F-电子磁磁性
Coexisting Kondo hybridization and itinerant f-electron ferromagnetism in UGe2
论文作者
论文摘要
部分填充的F-电子系统中的Kondo杂交在费米能量附近急剧传达了大量的电子状态,从而导致从超导性到异国电子订单的各种不稳定性。 UGE2是一个5F沉重的费米昂系统,其中伴有两个低于2阶过渡TC〜52 K的铁磁阶段的形成和一个交叉过渡tx〜32 k中断。这两个费用磁性阶段与Spin-triplet超级阶段同时相关,并始终在良好的阶段中均与良好的良好相关。两个铁磁相的起源及其在近缘晶格中的形成如何保持模棱两可。使用扫描隧道显微镜和光谱法,我们将UGE2中的空间电子状态探测为温度的函数。我们发现,根据我们的密度功能理论(DFT) + Gutzwiller计算,在高温下形成的化学电位附近,在高温上形成的化学电位附近发现了一个近核共振和尖锐的5F电子状态。随着温度降低在TC以下,共振会变窄,并最终在Fermi Energy处的TX下方倾倒巡回的F-电子光谱重量。我们的发现提出了一种石膏机制,在TX下方形成高度极化的铁磁相,该机制本身为高压下非常规超导性的出现奠定了基础。
Kondo hybridization in partially filled f-electron systems conveys significant amount of electronic states sharply near the Fermi energy leading to various instabilities from superconductivity to exotic electronic orders. UGe2 is a 5f heavy fermion system, where the Kondo hybridization is interrupted by the formation of two ferromagnetic phases below a 2nd order transition Tc ~ 52 K and a crossover transition Tx ~ 32 K. These two ferromagnetic phases are concomitantly related to a spin-triplet superconductivity that only emerges and persists inside the magnetically ordered phase at high pressure. The origin of the two ferromagnetic phases and how they form within a Kondo-lattice remain ambiguous. Using scanning tunneling microscopy and spectroscopy, we probe the spatial electronic states in the UGe2 as a function of temperature. We find a Kondo resonance and sharp 5f-electron states near the chemical potential that form at high temperatures above Tc in accordance with our density functional theory (DFT) + Gutzwiller calculations. As temperature is lowered below Tc, the resonance narrows and eventually splits below Tx dumping itinerant f-electron spectral weight right at the Fermi energy. Our findings suggest a Stoner mechanism forming the highly polarized ferromagnetic phase below Tx that itself sets the stage for the emergence of unconventional superconductivity at high pressure.