Dataset for the Publication "Transport spectroscopy of ultraclean tunable band gaps in bilayer graphene" Abstract: "The importance of controlling both the charge carrier density and the band gap of a semiconductor cannot be overstated, as it opens the doors to a wide range of applications, including, e.g., highly-tunable transistors, photodetectors, and lasers. Bernal-stacked bilayer graphene is a unique van-der-Waals material that allows tuning the band gap by an out-of-plane electric field. Although the first evidence of the tunable gap was already found ten years ago, it took until recent to fabricate sufficiently clean heterostructures where the electrically induced gap could be used to fully suppress transport or confine charge carr...
We demonstrate that the low-frequency resistance uctuations, or noise, in bilayer graphene is strong...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
The importance of controlling both the charge carrier density and the band gap of a semiconductor ca...
The electronic bandgap is an intrinsic property of semiconductors and insulators that largely determ...
The tunable band gap has made graphene a promising material for the construction of next-generation ...
The tunable band gap has made graphene a promising material for the construction of next-generation ...
The potential of graphene-based materials consisting of one or a few layers of graphite for integrat...
textGraphene bilayers in Bernal stacking exhibit a transverse electric (E) field dependent band gap,...
A central question in graphene chemistry is to what extent chemical modification can control an elec...
We show that the Bi-Layer Graphene allows the control of its electronic gap under an applied voltage
At the charge neutrality point, bilayer graphene (BLG) is strongly susceptible to electronic interac...
Bilayer graphene has the linear band dispersion of monolayer graphene at high energies, but paraboli...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
The edges of graphene-based systems possess unusual electronic properties, originating from the non-...
We demonstrate that the low-frequency resistance uctuations, or noise, in bilayer graphene is strong...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
The importance of controlling both the charge carrier density and the band gap of a semiconductor ca...
The electronic bandgap is an intrinsic property of semiconductors and insulators that largely determ...
The tunable band gap has made graphene a promising material for the construction of next-generation ...
The tunable band gap has made graphene a promising material for the construction of next-generation ...
The potential of graphene-based materials consisting of one or a few layers of graphite for integrat...
textGraphene bilayers in Bernal stacking exhibit a transverse electric (E) field dependent band gap,...
A central question in graphene chemistry is to what extent chemical modification can control an elec...
We show that the Bi-Layer Graphene allows the control of its electronic gap under an applied voltage
At the charge neutrality point, bilayer graphene (BLG) is strongly susceptible to electronic interac...
Bilayer graphene has the linear band dispersion of monolayer graphene at high energies, but paraboli...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
The edges of graphene-based systems possess unusual electronic properties, originating from the non-...
We demonstrate that the low-frequency resistance uctuations, or noise, in bilayer graphene is strong...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...
We investigate band-gap tuning of bilayer graphene between hexagonal boron nitride sheets, by extern...