Observation of paramagnetic spin-degeneracy lifting in EuZn2Sb2
arXiv:2407.14481 · doi:10.1103/PhysRevB.110.045130
Abstract
Taken together, time-reversal and spatial inversion symmetries impose a two-fold spin degeneracy of the electronic states in crystals. In centrosymmetric materials, this degeneracy can be lifted by introducing magnetism, either via an externally applied field or through internal magnetization. However, a correlated alignment of spins, even in the paramagnetic phase, can lift the spin degeneracy of electronic states. Here, we report an in-depth study of the electronic band structure of the Eu-ternary pnictide EuZn2Sb2 through a combination of high-resolution angle-resolved photoemission spectroscopy measurements and first principles calculations. An analysis of the photoemission lineshapes over a range of incident photon energies and sample temperatures is shown to reveal the presence of band spin degeneracy-lifting in the paramagnetic phase. Our ARPES results are in good agreement with theoretical ferromagnetic-phase calculations, which indicates the importance of ferromagnetic fluctuations in the system. Through our calculations, we predict that spin-polarized bands in EuZn2Sb2 generate a single pair of Weyl nodes. Our observation of band-splitting in EuZn2Sb2 provides a key step toward realizing time-reversal symmetry breaking physics in the absence of long-range magnetic order.
13 pages, 7 figures
References in corpus (10)
- Discovery (theoretical prediction and experimental observation) of a large-gap topological-insulator class with spin-polarized single-Dirac-cone on the surface
- A topological Dirac insulator in a quantum spin Hall phase : Experimental observation of first strong topological insulator
- Higher-order Topology of Axion Insulator EuInAs
- Spin fluctuation induced Weyl semimetal state in the paramagnetic phase of EuCdAs
- A Single Pair of Weyl Fermions in Half-metallic EuCd2As2 Semimetal
- Properties of single crystalline AZn2Sb2 (A=Ca,Eu,Yb)
- Signature of band inversion in the antiferromagnetic phase of axion insulator candidate EuIn2As2
- Resonant X-ray scattering study of diffuse magnetic scattering from the topological semimetals EuCdAs and EuCdSb
- Topological Hall Effect Driven by Short-Range Magnetic Orders in EuZnAs
- Measurement of Electronic Structure and Surface Reconstruction in the Superionic Cu2-xTe