The quantum limit (QL) of an electron liquid, realised at strong magnetic fields, has long been proposed to host a wealth of strongly correlated states of matter. Electronic states in the QL are, for example, quasi-one dimensional (1D), which implies perfectly nested Fermi surfaces prone to instabilities. Whereas the QL typically requires unreachably strong magnetic fields, the topological semimetal ZrTe$_5$ has been shown to reach the QL at fields of only a few Tesla. Here, we characterize the QL of ZrTe$_5$ at fields up to 64 T by a combination of electrical-transport and ultrasound measurements. We find that the Zeeman effect in ZrTe$_5$ enables an efficient tuning of the 1D Landau band structure with magnetic field. This results in a Li...
Graphite is a model system for the study of three-dimensional electrons and holes in the magnetic qu...
Graphite is a model system for the study of three-dimensional electrons and holes in the magnetic qu...
ZrTe5 is an important semiconductor thermoelectric material and a candidate topological insulator. H...
The quantum limit (QL) of an electron liquid, realised at strong magnetic fields, has long been prop...
The quantum Hall effect (QHE) is traditionally considered to be a purely two-dimensional (2D) phenom...
Dirac semimetals have attracted extensive attentions in recent years. It has been theoretically sugg...
International audienceAbstract The ultra-quantum limit is achieved when a magnetic field confines an...
We apply 125Te nuclear magnetic resonance (NMR) spectroscopy to investigate the Dirac semimetal ZrTe...
The quantum Hall effect (QHE) is traditionally considered to be a purely two-dimensional (2D) phenom...
We combine transport, magnetization, and torque magnetometry measurements to investigate the electro...
Interacting electrons confined to their lowest Landau level in a high magnetic field can form a vari...
We report 125Te NMR measurements of the topological quantum material ZrTe5. Spin-lattice relaxation ...
A quantum spin Hall (QSH) insulator hosts topological states at the one-dimensional (1D) edge, along...
Zirconium pentatelluride ZrTe5 is a topological semimetal. The presence of a temperature induced Lif...
The topological materials have attracted much attention for their unique electronic structure and pe...
Graphite is a model system for the study of three-dimensional electrons and holes in the magnetic qu...
Graphite is a model system for the study of three-dimensional electrons and holes in the magnetic qu...
ZrTe5 is an important semiconductor thermoelectric material and a candidate topological insulator. H...
The quantum limit (QL) of an electron liquid, realised at strong magnetic fields, has long been prop...
The quantum Hall effect (QHE) is traditionally considered to be a purely two-dimensional (2D) phenom...
Dirac semimetals have attracted extensive attentions in recent years. It has been theoretically sugg...
International audienceAbstract The ultra-quantum limit is achieved when a magnetic field confines an...
We apply 125Te nuclear magnetic resonance (NMR) spectroscopy to investigate the Dirac semimetal ZrTe...
The quantum Hall effect (QHE) is traditionally considered to be a purely two-dimensional (2D) phenom...
We combine transport, magnetization, and torque magnetometry measurements to investigate the electro...
Interacting electrons confined to their lowest Landau level in a high magnetic field can form a vari...
We report 125Te NMR measurements of the topological quantum material ZrTe5. Spin-lattice relaxation ...
A quantum spin Hall (QSH) insulator hosts topological states at the one-dimensional (1D) edge, along...
Zirconium pentatelluride ZrTe5 is a topological semimetal. The presence of a temperature induced Lif...
The topological materials have attracted much attention for their unique electronic structure and pe...
Graphite is a model system for the study of three-dimensional electrons and holes in the magnetic qu...
Graphite is a model system for the study of three-dimensional electrons and holes in the magnetic qu...
ZrTe5 is an important semiconductor thermoelectric material and a candidate topological insulator. H...