Distinct evolutions of Weyl fermion quasiparticles and Fermi arcs with bulk band topology in Weyl semimetals
arXiv:1702.01934 · doi:10.1103/PhysRevLett.118.106406
Abstract
The Weyl semimetal phase is a recently discovered topological quantum state of matter characterized by the presence of topologically protected degeneracies near the Fermi level. These degeneracies are the source of exotic phenomena, including the realization of chiral Weyl fermions as quasiparticles in the bulk and the formation of Fermi arc states on the surfaces. Here, we demonstrate that these two key signatures show distinct evolutions with the bulk band topology by performing angle-resolved photoemission spectroscopy, supported by first-principle calculations, on transition-metal monophosphides. While Weyl fermion quasiparticles exist only when the chemical potential is located between two saddle points of the Weyl cone features, the Fermi arc states extend in a larger energy scale and are robust across the bulk Lifshitz transitions associated with the recombination of two non-trivial Fermi surfaces enclosing one Weyl point into a single trivial Fermi surface enclosing two Weyl points of opposite chirality. Therefore, in some systems (e.g. NbP), topological Fermi arc states are preserved even if Weyl fermion quasiparticles are absent in the bulk. Our findings not only provide insight into the relationship between the exotic physical phenomena and the intrinsic bulk band topology in Weyl semimetals, but also resolve the apparent puzzle of the different magneto-transport properties observed in TaAs, TaP and NbP, where the Fermi arc states are similar.
To appear in Physical Review Letters
References in corpus (7)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Weyl semimetal phase in non-centrosymmetric transition metal monophosphides
- Topological Node-Line Semimetal in Three Dimensional Graphene Networks
- Weyl Node and Spin Texture in Trigonal Tellurium and Selenium
- Weyl semimetals from noncentrosymmetric topological insulators
- Topological electronic structure and Weyl semimetal in the TlBiSe class of semiconductors
- Weyl semimetal from spontaneous inversion symmetry breaking in pyrochlore oxides
Cited by in corpus (20)
- Quasiparticle interference on type-I and type-II Weyl semimetal surfaces: a review
- Observation of Weyl nodes in robust type-II Weyl semimetal WP2
- Tunable Lifshitz Transitions and Multiband Transport in Tetralayer Graphene
- Spin- and angle-resolved photoemission on topological materials
- Trivial topological phase of CaAgP and the topological nodal-line transition in CaAg(P1-xAsx)
- Anatomy of Topological Surface States: Exact Solutions from Destructive Interference on Frustrated Lattices
- Landau quantization in coupled Weyl points: a case study of semimetal NbP
- Exotic Landau Diamagnetism and Weyl-Fermions Excitations in TaAs Revealed by As NMR and NQR
- Spin-resolved electronic response to the phase transition in MoTe
- Inherited Weak Topological Insulator Signatures in Topological Hourglass Semimetal Nb3XTe6 (X = Si, Ge)
- Nontrivial topology of bulk HgSe from the study of cyclotron effective mass, electron mobility and phase shift of Shubnikov-de Haas oscillations
- Landau quantization in tilted Weyl semimetals with broken symmetry
- Observation of pressure-induced Weyl state and superconductivity in a chirality-neutral Weyl semimetal candidate SrSi2
- Floquet topological phases with time-reversal and space inversion symmetries and dynamical detection of topological charges
- Fast nuclear spin relaxation rates in tilted cone Weyl semimetals: Redshift factors from Korringa relation
- Emergent Weyl Fermions in an Orbital Multipolar Ordering Phase
- Breakdown of boundary criticality and exotic topological semimetals in -invariant systems
- k-Resolved electronic structure of buried heterostructure and impurity systems by soft-X-ray ARPES
- Anti-higher-order Weyl semimetal
- Influence of anisotropy, tilt and pairing of Weyl nodes: The Weyl semimetals TaAs, TaP, NbAs and NbP