论文标题
四方墨西哥帽子分散和可切换的半金属状态,具有多个各向异性的韦尔氏素。
Tetragonal Mexican-Hat Dispersion and Switchable Half-Metal State with Multiple Anisotropic Weyl Fermions in Penta-Graphene
论文作者
论文摘要
在过去的几十年中,2D碳同素异形体的不断扩展的文库为未来的基于碳的电子产品产生了广泛的外来特性。然而,由于配对的价电子构型,已知的同素体都是固有的非磁性。基于报道的2D碳结构数据库和第一原理计算,我们在此证明,可以在突出的同素同素原状Penta-Graphene中获得固有的铁磁性,该penta-graphene具有独特的墨西哥帽子带边缘,从而引起了Van Hove的奇异性和电子不稳定。通过适度的孔掺杂诱导,在电解质门中可以实现,半导体的五角烯可以转变为具有室温稳定性和可切换旋转方向的不同铁磁半金属。特别是,在适当的菌株下,可以发现多种各向异性Weyl态,包括I型和II型Weyl锥和杂化型Weyl节点环。这些发现不仅确定了有希望的碳同素同素,可以获得基于碳的旋转器设备的固有磁性,而且还强调了通过将电子和机械手段结合实现不同的Weyl态的可能性。
In past decades, the ever-expanding library of 2D carbon allotropes has yielded a broad range of exotic properties for the future carbon-based electronics. However, the known allotropes are all intrinsic nonmagnetic due to the paired valence electrons configuration. Based on the reported 2D carbon structure database and first-principles calculations, herein we demonstrate that inherent ferromagnetism can be obtained in the prominent allotrope, penta-graphene, which has an unique Mexican-hat valence band edge, giving rise to van Hove singularities and electronic instability. Induced by modest hole-doping, being achievable in electrolyte gate, the semiconducting pentagraphene can transform into different ferromagnetic half-metals with room temperature stability and switchable spin directions. In particular, multiple anisotropic Weyl states, including type-I and type-II Weyl cones and hybrid quasi Weyl nodal loop, can be found in a sizable energy window of spin-down half-metal under proper strains. These findings not only identify a promising carbon allotrope to obtain the inherent magnetism for carbon-based spintronic devices, but highlight the possibility to realize different Weyl states by combining the electronic and mechanical means as well.