Three-dimensional Dirac semimetals, three-dimensional analogues of graphene, are unusual quantum materials with massless Dirac fermions, which can be further converted to Weyl fermions by breaking time reversal or inversion symmetry. Topological surface states with Fermi arcs are predicted on the surface and have been observed by angle-resolved photoemission spectroscopy experiments. Although the exotic transport properties of the bulk Dirac cones have been demonstrated, it is still a challenge to reveal the surface states via transport measurements due to the highly conductive bulk states. Here, we show Aharonov-Bohm oscillations in individual single-crystal Cd3As2 nanowires with low carrier concentration and large surface-to-volume ratio,...
The dispersion of charge carriers in a metal is distinctly different from that of free electrons owi...
Three-dimensional (3D) Dirac semimetals are 3D analogues of graphene, which display Dirac points wit...
Cd3As2 is widely considered among the few materials realizing the three-dimensional (3D) Dirac semim...
We report an observation of a topologically protected transport of surface carriers in a quasiballis...
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
Three-dimensional (3D) Dirac semimetals are featured by 3D linear energy-momentum dispersion relatio...
Three-dimensional (3D) topological Dirac semimetal has a linear energy dispersion in 3D momentum spa...
Three-dimensional (3D) topological Dirac semimetal has a linear energy dispersion in 3D momentum spa...
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
Three-dimensional Dirac semimetals host bulk Dirac fermions characterized by a linear dispersion rel...
Three-dimensional (3D) topological Dirac semimetal has a linear energy dispersion in 3D momentum spa...
The dispersion of charge carriers in a metal is distinctly different from that of free electrons owi...
Three-dimensional (3D) Dirac semimetals are 3D analogues of graphene, which display Dirac points wit...
Three-dimensional (3D) Dirac semimetals are 3D analogues of graphene, which display Dirac points wit...
Single crystals of topological Dirac semimetal Cd3As2 were synthesized using a modified vapour trans...
The dispersion of charge carriers in a metal is distinctly different from that of free electrons owi...
Three-dimensional (3D) Dirac semimetals are 3D analogues of graphene, which display Dirac points wit...
Cd3As2 is widely considered among the few materials realizing the three-dimensional (3D) Dirac semim...
We report an observation of a topologically protected transport of surface carriers in a quasiballis...
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
Three-dimensional (3D) Dirac semimetals are featured by 3D linear energy-momentum dispersion relatio...
Three-dimensional (3D) topological Dirac semimetal has a linear energy dispersion in 3D momentum spa...
Three-dimensional (3D) topological Dirac semimetal has a linear energy dispersion in 3D momentum spa...
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
Three-dimensional Dirac semimetals host bulk Dirac fermions characterized by a linear dispersion rel...
Three-dimensional (3D) topological Dirac semimetal has a linear energy dispersion in 3D momentum spa...
The dispersion of charge carriers in a metal is distinctly different from that of free electrons owi...
Three-dimensional (3D) Dirac semimetals are 3D analogues of graphene, which display Dirac points wit...
Three-dimensional (3D) Dirac semimetals are 3D analogues of graphene, which display Dirac points wit...
Single crystals of topological Dirac semimetal Cd3As2 were synthesized using a modified vapour trans...
The dispersion of charge carriers in a metal is distinctly different from that of free electrons owi...
Three-dimensional (3D) Dirac semimetals are 3D analogues of graphene, which display Dirac points wit...
Cd3As2 is widely considered among the few materials realizing the three-dimensional (3D) Dirac semim...