Frank Stem
C R C Critical Reviews in Solid State Sciences
We study the low-energy electronic properties of a junction made of two crossed metallic carbon nanotubes of general chiralities. We derive a tight-binding tunneling matrix element that couples low-energy states on the two tubes, which allows us to calculate the contact conductance of the junction. We find that the intrinsic asymmetries of the junction cause the forward- and backward-hopping probabilities from one tube to another to be different. This defines a zero-field Hall conductance for the junction, which we find to scale inversely with the junction contact conductance. Through a systematic study of the dependence of the junction conductance on different junction parameters, we find that the crossing angle is the dominant factor that determines the magnitude of the conductance. © 2011 American Physical Society.
Frank Stem
C R C Critical Reviews in Solid State Sciences
T. Schneider, E. Stoll
Physical Review B
E. Babich, J. Paraszczak, et al.
Microelectronic Engineering
U. Wieser, U. Kunze, et al.
Physica E: Low-Dimensional Systems and Nanostructures