We investigate the electronic transport properties of single wall nicked carbon nanotube (SWNT) using a tight-binding model. In particular, the conductance, emittance, and local density of states of the nicked SWNT are calculated. The resonance structures at all energy levels depend, as expected, on the specific configuration of the system. Two transmissive eigenchannels through the system are separated and examined in detail. Several nicking strengths are considered and quantum dot behavior has been found only for heavily nicked carbon nanotubes. Furthermore, the interesting properties of the emittance of the nicked SWNT is discussed.published_or_final_versio
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Quantum transport through finite-length single wall carbon nanotubes was investigated theoretically ...
We have studied the electronic properties of single-wall carbon nanotubes (SWNTs) from room temperat...
We have studied the electronic properties of single-wall carbon nanotubes (SWNTs) from room temperat...
Transport spectroscopy, a technique based on current-voltage measurements of individual nanostructur...
In this thesis Postma presents transport experiments performed on individual single-wall carbon nano...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
We report the characterization of electronic shell filling in metallic single-walled carbon nanotube...
We report the characterization of electronic shell filling in metallic single-walled carbon nanotube...
We review recent progress in the measurement and understanding of the electrical properties of indiv...
We review recent progress in the measurement and understanding of the electrical properties of indiv...
The double quantum dot system with single-walled metallic armchair carbon nanotube leads has been st...
Abstract. We report on electronic transport in devices consisting of individual semiconducting singl...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Quantum transport through finite-length single wall carbon nanotubes was investigated theoretically ...
We have studied the electronic properties of single-wall carbon nanotubes (SWNTs) from room temperat...
We have studied the electronic properties of single-wall carbon nanotubes (SWNTs) from room temperat...
Transport spectroscopy, a technique based on current-voltage measurements of individual nanostructur...
In this thesis Postma presents transport experiments performed on individual single-wall carbon nano...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
Low temperature electron transport measurements on individual single wall carbon nanotubes are descr...
We report the characterization of electronic shell filling in metallic single-walled carbon nanotube...
We report the characterization of electronic shell filling in metallic single-walled carbon nanotube...
We review recent progress in the measurement and understanding of the electrical properties of indiv...
We review recent progress in the measurement and understanding of the electrical properties of indiv...
The double quantum dot system with single-walled metallic armchair carbon nanotube leads has been st...
Abstract. We report on electronic transport in devices consisting of individual semiconducting singl...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Quantum transport through finite-length single wall carbon nanotubes was investigated theoretically ...