Magnetotransport measurements were carried out on nanowires of the Dirac semimetal Cd3As2. Weak anti-localization was observed at 1.9 K, consistent with the presence of strong spin-orbit interaction. With decreasing temperature, Shubnikov-de Haas oscillations were seen, revealing an ultrahigh mobility of ≈57,000 cm2V−1s−1 at 1.9 K. The strong oscillations display a linear dependence of the Landau level index on the inverse of the magnetic field, yielding an intercept that is consistent with a π Berry phase — the signature feature of Dirac fermions. By studying the fundamental properties of Dirac materials, new avenues can be explored by exploiting their unique properties for spintronics and magneto-electronic devices
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
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...
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...
Cd3As2 is a candidate three-dimensional Dirac semi-metal which has exceedingly high mobility and non...
Cd3As2 is a candidate three-dimensional Dirac semimetal which has exceedingly high mobility and nons...
Three-dimensional (3D) topological Dirac semimetal has a linear energy dispersion in 3D momentum spa...
Three-dimensional Dirac semimetals host bulk Dirac fermions characterized by a linear dispersion rel...
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
Single crystals of topological Dirac semimetal Cd3As2 were synthesized using a modified vapour trans...
Three-dimensional Dirac semimetals, three-dimensional analogues of graphene, are unusual quantum mat...
Dirac electronic materials beyond graphene and topological insulators have recently attracted consid...
Cd3As2 is a three-dimensional Dirac semimetal. Electrons in Cd3As2 behave like massless particles kn...
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
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...
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...
Cd3As2 is a candidate three-dimensional Dirac semi-metal which has exceedingly high mobility and non...
Cd3As2 is a candidate three-dimensional Dirac semimetal which has exceedingly high mobility and nons...
Three-dimensional (3D) topological Dirac semimetal has a linear energy dispersion in 3D momentum spa...
Three-dimensional Dirac semimetals host bulk Dirac fermions characterized by a linear dispersion rel...
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
Single crystals of topological Dirac semimetal Cd3As2 were synthesized using a modified vapour trans...
Three-dimensional Dirac semimetals, three-dimensional analogues of graphene, are unusual quantum mat...
Dirac electronic materials beyond graphene and topological insulators have recently attracted consid...
Cd3As2 is a three-dimensional Dirac semimetal. Electrons in Cd3As2 behave like massless particles kn...
Three-dimensional topological Dirac semimetals have a linear dispersion in 3D momentum space and are...
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...