论文标题
浆果通量单管的动量空间特征
Momentum-space signatures of Berry flux monopoles in a Weyl semimetal
论文作者
论文摘要
自狄拉克通量量化的早期以来,一直在寻求磁性单极作为量化电荷的潜在推论。与嵌入电磁理论的磁单孔相反,Weyl晶体在相互参数空间中表现出浆果通量单孔。作为晶体动量的函数,这种单孔位于Weyl锥的退化点。在这里,我们报告了TAAS中浆果通量单翼型的动量分辨光谱特征,作为一种典范的Weyl半度。我们已经通过角度分辨光发射光谱探测了Weyl-Fermion态的轨道和自旋角动量(OAM和SAM),在散装敏感的软X射线能(SX-ARPES)上与光电旋转旋转检测和圆形二色性相结合。在第一原理计算的支持下,我们的测量图像特征的图像特征是绿色节点在Weyl节点处拓扑非平凡的绕组,并揭示了Weyl带的手性依赖性SAM。我们的结果从实验中可视化了Weyl半学中的非平凡动量空间拓扑,这对固体中量子几何效应的研究具有深远的影响。
Since the early days of Dirac flux quantization, magnetic monopoles have been sought after as a potential corollary of quantized electric charge. As opposed to magnetic monopoles embedded into the theory of electromagnetism, Weyl crystals exhibit Berry flux monopoles in reciprocal parameter space. As a function of crystal momentum, such monopoles locate at the degeneracy point of the Weyl cone. Here, we report momentum-resolved spectroscopic signatures of Berry flux monopoles in TaAs as a paradigmatic Weyl semimetal. We have probed the orbital and spin angular momentum (OAM and SAM) of the Weyl-fermion states by angle-resolved photoemission spectroscopy at bulk-sensitive soft X-ray energies (SX-ARPES) combined with photoelectron spin detection and circular dichroism. Supported by first-principles calculations, our measurements image characteristics of a topologically non-trivial winding of the OAM at the Weyl nodes and unveil a chirality-dependent SAM of the Weyl bands. Our results experimentally visualize the non-trivial momentum-space topology in a Weyl semimetal, promising to have profound implications for the study of quantum-geometric effects in solids.