论文标题
II型Weyl半含量WP2中的蝴蝶状各向异性磁敏感和角度依赖性浆果相
Butterfly-like anisotropic magnetoresistance and angle-dependent Berry phase in Type-II Weyl semimetal WP2
论文作者
论文摘要
Weyl Semimetal是物质的新拓扑阶段的新阶段,具有无质量的Weyl Fermions的低能激发。在这里,我们介绍了II型WEYL半准WP2的全面研究。运输研究表明,在低温下有蝴蝶状的磁倍率,反映了电子费米表面的各向异性。在温度升高时,四瓣特征在升高时逐渐演变成两瓣的特征,这主要是由于电子费米表面的相对贡献降低了,与磁度耐药性的孔费米表面相比。此外,从量子振荡中进一步发现了依赖角度的浆果相,量子振荡归因于磁场对极端费米轨道的有效操纵,以感受到动量空间中附近的拓扑奇异性。 WP2的透露拓扑特征和各向异性费米表面显着丰富了Weyl Semimetals的物理特性,并在拓扑电子和Fermitronic设备应用中持有巨大的承诺。
Weyl semimetal emerges as a new topologically nontrivial phase of matter, hosting low-energy excitations of massless Weyl fermions. Here, we present a comprehensive study of the type-II Weyl semimetal WP2. Transport studies show a butterfly-like magnetoresistance at low temperature, reflecting the anisotropy of the electron Fermi surfaces. The four-lobed feature gradually evolves into a two-lobed one upon increasing temperature, mainly due to the reduced relative contribution of electron Fermi surfaces compared to hole Fermi surfaces for the magnetoresistance. Moreover, angle-dependent Berry phase is further discovered from the quantum oscillations, which is ascribed to the effective manipulation of the extremal Fermi orbits by the magnetic field to feel the nearby topological singularities in the momentum space. The revealed topological characters and anisotropic Fermi surfaces of WP2 substantially enrich the physical properties of Weyl semimetals and hold great promises in topological electronic and Fermitronic device applications.