Three-dimensional topological insulators (3D TIs) represent states of quantum matters in which surface states are protected by timereversal symmetry and an inversion occurs between bulk conduction and valence bands. However, the bulk-band inversion, which is intimately tied to the topologically nontrivial nature of 3D Tis, has rarely been investigated by experiments. Besides, 3D massive Dirac fermions with nearly linear band dispersions were seldom observed in TIs. Recently, a van der Waals crystal, ZrTe5, was theoretically predicted to be a TI. Here, we report an infrared transmission study of a high-mobility [∼33,000 cm2/(V · s)] multilayer ZrTe5 flake at magnetic fields (B) up to 35 T. Our observation of a linear relationship between the...
Zirconium pentatelluride was recently reported to be a 3D Dirac semimetal, with a single conical ba...
A quantum spin Hall (QSH) insulator hosts topological states at the one-dimensional (1D) edge, along...
ZrTe5 is an important semiconductor thermoelectric material and a candidate topological insulator. H...
<p>Three-dimensional topological insulators (3D TIs) represent states of quantum matters in which su...
We report infrared magnetospectroscopy studies on thin crystals of an emerging Dirac material ZrTe ...
We present a magnetoinfrared spectroscopy study on a newly identified three-dimensional (3D) Dirac s...
Three-dimensional (3D) topological Dirac materials have been under intensive study recently. The lay...
The complex electronic properties of ZrTe5 have recently stimulated in-depth investigations that ass...
We report 125Te NMR measurements of the topological quantum material ZrTe5. Spin-lattice relaxation ...
We present an infrared spectroscopy study of ZrTe5, which confirms a recent theoretical proposal th...
ZrTe5 is a newly discovered topological material. Shortly after a single layer ZrTe5 had been predic...
Topological insulators are characterized by a massless Dirac surface state and a bulk energy gap. An...
Recently, transition metal pentatellurides MTes (M = Zr, Hf) have inspired intensive research effort...
Recent discoveries have spurred the theoretical prediction and experimental realization of novel mat...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
Zirconium pentatelluride was recently reported to be a 3D Dirac semimetal, with a single conical ba...
A quantum spin Hall (QSH) insulator hosts topological states at the one-dimensional (1D) edge, along...
ZrTe5 is an important semiconductor thermoelectric material and a candidate topological insulator. H...
<p>Three-dimensional topological insulators (3D TIs) represent states of quantum matters in which su...
We report infrared magnetospectroscopy studies on thin crystals of an emerging Dirac material ZrTe ...
We present a magnetoinfrared spectroscopy study on a newly identified three-dimensional (3D) Dirac s...
Three-dimensional (3D) topological Dirac materials have been under intensive study recently. The lay...
The complex electronic properties of ZrTe5 have recently stimulated in-depth investigations that ass...
We report 125Te NMR measurements of the topological quantum material ZrTe5. Spin-lattice relaxation ...
We present an infrared spectroscopy study of ZrTe5, which confirms a recent theoretical proposal th...
ZrTe5 is a newly discovered topological material. Shortly after a single layer ZrTe5 had been predic...
Topological insulators are characterized by a massless Dirac surface state and a bulk energy gap. An...
Recently, transition metal pentatellurides MTes (M = Zr, Hf) have inspired intensive research effort...
Recent discoveries have spurred the theoretical prediction and experimental realization of novel mat...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
Zirconium pentatelluride was recently reported to be a 3D Dirac semimetal, with a single conical ba...
A quantum spin Hall (QSH) insulator hosts topological states at the one-dimensional (1D) edge, along...
ZrTe5 is an important semiconductor thermoelectric material and a candidate topological insulator. H...