Through advanced experimental techniques on CrI3 single crystals, we derive a pressure-temperature phase diagram. We find that T-c increases to similar to 66 K with pressure up to similar to 3 GPa followed by a decrease to similar to 10 K at 21.2 GPa. The experimental results are reproduced by theoretical calculations based on density functional theory where electron-electron interactions are treated by a static on-site Hubbard U on Cr 3d orbitals. The origin of the pressure-induced reduction of the ordering temperature is associated with a decrease in the calculated bond angle, from 95 degrees at ambient pressure to similar to 85 degrees at 25 GPa. Above 22 GPa, experiment and theory jointly point to the idea that the ferromagnetically ord...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
Two-dimensional materials are of current great interest for their promising applications to postsili...
Exploring new parameter regimes to realize and control novel phases of matter has been a main theme ...
Through advanced experimental techniques on Formula Presented single crystals, we derive a pressure-...
We have examined the crystallographic and magnetic properties of single crystals of CrI<sub>3</sub>,...
Atomically thin films of layered chromium triiodide (CrI3) have recently been regarded as suitable c...
We have studied the magnetic and electronic behaviors of CrI3 monolayer under biaxial strain and ext...
We report on the optical properties from terahertz (THz) to Near-Infrared (NIR) of the layered magne...
Recent studies of pressure effects on the antiferromagnetism in Cr and its alloys are reviewed with ...
Recent studies of pressure effects on the antiferromagnetism in Cr and its alloys are reviewed with ...
397-399Using first principles density functional theory calculations based on the tight-binding line...
A neutron diffraction experiment has been performed to study the effects of high pressure on the mag...
We present first results of high-pressure resistivity measurements on pure chromium. Two pieces of e...
Probing the magnetism in quasi two-dimensional materials has the potential in driving their properti...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
Two-dimensional materials are of current great interest for their promising applications to postsili...
Exploring new parameter regimes to realize and control novel phases of matter has been a main theme ...
Through advanced experimental techniques on Formula Presented single crystals, we derive a pressure-...
We have examined the crystallographic and magnetic properties of single crystals of CrI<sub>3</sub>,...
Atomically thin films of layered chromium triiodide (CrI3) have recently been regarded as suitable c...
We have studied the magnetic and electronic behaviors of CrI3 monolayer under biaxial strain and ext...
We report on the optical properties from terahertz (THz) to Near-Infrared (NIR) of the layered magne...
Recent studies of pressure effects on the antiferromagnetism in Cr and its alloys are reviewed with ...
Recent studies of pressure effects on the antiferromagnetism in Cr and its alloys are reviewed with ...
397-399Using first principles density functional theory calculations based on the tight-binding line...
A neutron diffraction experiment has been performed to study the effects of high pressure on the mag...
We present first results of high-pressure resistivity measurements on pure chromium. Two pieces of e...
Probing the magnetism in quasi two-dimensional materials has the potential in driving their properti...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
CrCl3 is a layered insulator that undergoes a crystallographic phase transition below room temperatu...
Two-dimensional materials are of current great interest for their promising applications to postsili...
Exploring new parameter regimes to realize and control novel phases of matter has been a main theme ...