Publication | Open Access
Molecular states in carbon nanotube double quantum dots
82
Citations
17
References
2006
Year
EngineeringNanocomputingAdditional Top GatesDifferential ConductanceCarbon-based MaterialTunneling MicroscopyNanoelectronicsNanonetworkQuantum DotsMolecular StatesCarbon NanotubesPhysicsNanotechnologyNano ApplicationSequential-tunneling Line ShapeGraphene Quantum DotNanomaterialsApplied PhysicsNanotubes
We report electrical transport measurements through a semiconducting single-walled carbon nanotube with three additional top gates. At low temperatures the system acts as a double quantum dot with large interdot tunnel coupling allowing for the observation of tunnel-coupled molecular states extending over the whole double-dot system. We precisely extract the tunnel coupling and identify the molecular states by the sequential-tunneling line shape of the resonances in differential conductance.
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