Charge transport of topological semimetals is the focus of intensive investigations because of their nontrivial band topology. Heat transport of these materials, on the other hand, is largely unexplored and remains elusive. Here, we report on an observation of unprecedented, giant magnetic quantum oscillations of thermal conductivity in the prototypical Weyl semimetal TaAs. The oscillations are antiphase with the quantum oscillating electronic density of states of a Weyl pocket, and their amplitudes amount to 2 orders of magnitude of the estimation based on the Wiedemann-Franz law. Our analyses show that all the conventional heat-transport mechanisms through diffusions of propagating electrons, phonons, and electron-hole bipolar excitations...
[[abstract]]Detecting the spectroscopic signatures of relativistic quasiparticles in emergent topolo...
Topological semimetals are well known for the linear energy band dispersion in the bulk state and t...
The Weyl semimetal NbP exhibits an extremely large magnetoresistance and an ultra-high mobility. The...
We report the electrical transport properties for Weyl semimetal TaAs in an intense magnetic field. ...
Weyl fermions are a recently discovered ingredient for correlated states of electronic matter. A key...
Weyl semimetals provide the realization of Weyl fermions in solid-state physics. Among all the physi...
[[abstract]]Weyl semimetals provide the realization of Weyl fermions in solid-state physics. Among a...
Weyl semimetals provide the realization of Weyl fermions in solid-state physics. Among all the physi...
\qquad Topology is a branch of mathematics that describes the connectedness of closed surfaces. In c...
Weyl semimetal is a kind of three-dimensional material which has several band touch points in the en...
The complexity of electronic band structures in quantum materials offers new charge-neutral degrees ...
Topological semimetals are predicted to exhibit unconventional electrodynamics, but a central experi...
The concept of the geometric Berry phase of the quantum mechanical wave function has led to a better...
Tantalum arsenide is a member of the noncentrosymmetric monopnictides, which are putative Weyl semim...
Quasiparticles and collective modes are two fundamental aspects that characterize quantum matter in ...
[[abstract]]Detecting the spectroscopic signatures of relativistic quasiparticles in emergent topolo...
Topological semimetals are well known for the linear energy band dispersion in the bulk state and t...
The Weyl semimetal NbP exhibits an extremely large magnetoresistance and an ultra-high mobility. The...
We report the electrical transport properties for Weyl semimetal TaAs in an intense magnetic field. ...
Weyl fermions are a recently discovered ingredient for correlated states of electronic matter. A key...
Weyl semimetals provide the realization of Weyl fermions in solid-state physics. Among all the physi...
[[abstract]]Weyl semimetals provide the realization of Weyl fermions in solid-state physics. Among a...
Weyl semimetals provide the realization of Weyl fermions in solid-state physics. Among all the physi...
\qquad Topology is a branch of mathematics that describes the connectedness of closed surfaces. In c...
Weyl semimetal is a kind of three-dimensional material which has several band touch points in the en...
The complexity of electronic band structures in quantum materials offers new charge-neutral degrees ...
Topological semimetals are predicted to exhibit unconventional electrodynamics, but a central experi...
The concept of the geometric Berry phase of the quantum mechanical wave function has led to a better...
Tantalum arsenide is a member of the noncentrosymmetric monopnictides, which are putative Weyl semim...
Quasiparticles and collective modes are two fundamental aspects that characterize quantum matter in ...
[[abstract]]Detecting the spectroscopic signatures of relativistic quasiparticles in emergent topolo...
Topological semimetals are well known for the linear energy band dispersion in the bulk state and t...
The Weyl semimetal NbP exhibits an extremely large magnetoresistance and an ultra-high mobility. The...