Niobium halides, Nb3X8 (X = Cl,Br,I), which are predicted two-dimensional magnets, have recently gotten attention due to their breathing kagome geometry. Here, we have studied the electronic structure of Nb3Br8 by using angle-resolved photoemission spectroscopy (ARPES) and first-principles calculations. ARPES results depict the presence of multiple flat and weakly dispersing bands. These bands are well explained by the theoretical calculations, which show they have Nb d character indicating their origination from the Nb atoms forming the breathing kagome plane. This van der Waals material can be easily thinned down via mechanical exfoliation to the ultrathin limit and such ultrathin samples are stable as depicted from the time-dependent Ram...
The study of novel 2D platforms implementing magnetism in tunable van der Waals (vdW) homo- and hete...
Two-dimensional electron gases(2DEGs)based on KTaO3 are emerging as a promising platform for spin-or...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...
The destructive interference of wavefunctions in a kagome lattice can give rise to topological flat ...
This work studies the electronic and magnetic properties of few-layer Nb${}_{3}$I${}_{8}$ using firs...
We investigate strong electron-electron correlation effects on 2-dimensional van der Waals materials...
The discovery of intrinsic two-dimensional magnetism has ignited intense research interest due to th...
The discovery of intrinsic two-dimensional magnetism has ignited intense research interest due to th...
The Niobium surface is almost always covered by a native oxide layer which greatly influences the pe...
Recently, layered kagome metals AV$_3$Sb$_5$ (A = K, Rb, and Cs) have emerged as a fertile platform ...
We investigate the electronic structure of $2H$-$\mathrm{Nb}\mathrm{S}_2$ and $h$$\mathrm{BN}$ by an...
Understanding the electronic transport properties of layered, van der Waals transition metal halides...
Layered crystalline materials that consist of transition metal atoms on a kagome network have emerge...
Among condensed matter systems, Mott insulators exhibit diverse properties that emerge from electron...
Layered crystalline materials that consist of transition metal atoms on a kagome network have emerge...
The study of novel 2D platforms implementing magnetism in tunable van der Waals (vdW) homo- and hete...
Two-dimensional electron gases(2DEGs)based on KTaO3 are emerging as a promising platform for spin-or...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...
The destructive interference of wavefunctions in a kagome lattice can give rise to topological flat ...
This work studies the electronic and magnetic properties of few-layer Nb${}_{3}$I${}_{8}$ using firs...
We investigate strong electron-electron correlation effects on 2-dimensional van der Waals materials...
The discovery of intrinsic two-dimensional magnetism has ignited intense research interest due to th...
The discovery of intrinsic two-dimensional magnetism has ignited intense research interest due to th...
The Niobium surface is almost always covered by a native oxide layer which greatly influences the pe...
Recently, layered kagome metals AV$_3$Sb$_5$ (A = K, Rb, and Cs) have emerged as a fertile platform ...
We investigate the electronic structure of $2H$-$\mathrm{Nb}\mathrm{S}_2$ and $h$$\mathrm{BN}$ by an...
Understanding the electronic transport properties of layered, van der Waals transition metal halides...
Layered crystalline materials that consist of transition metal atoms on a kagome network have emerge...
Among condensed matter systems, Mott insulators exhibit diverse properties that emerge from electron...
Layered crystalline materials that consist of transition metal atoms on a kagome network have emerge...
The study of novel 2D platforms implementing magnetism in tunable van der Waals (vdW) homo- and hete...
Two-dimensional electron gases(2DEGs)based on KTaO3 are emerging as a promising platform for spin-or...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...