Physical Review B · 2011 · 11 citations · 27 references
SpintronicsQuantum ScienceCarbon Nanotube RopeSpin-dependent Electronic HybridizationPhysicsEngineeringCarbon-based MaterialCharge TransportApplied PhysicsQuantum MaterialsDifferent StrandsGraphene NanoribbonNanocomputingCharge Carrier TransportNanotubesCarbon NanotubesSingle-electron Addition
We demonstrate single-electron addition to different strands of a carbon nanotube rope. Anticrossings of anomalous conductance peaks occur in quantum transport measurements through the parallel quantum dots forming on the individual strands. We determine the magnitude and the sign of the hybridization as well as the Coulomb interaction between the carbon nanotube quantum dots, finding that the bonding states dominate the transport. In a magnetic field the hybridization is shown to be selectively suppressed due to spin effects.
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Synthesis of individual single-walled carbon nanotubes on patterned silicon wafers
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