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Imaging Electron Wave Functions of Quantized Energy Levels in Carbon Nanotubes

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arxiv cond-mat/9811317 v1 pith:2LW3Z4EE submitted 1998-11-23 cond-mat.mes-hall

Imaging Electron Wave Functions of Quantized Energy Levels in Carbon Nanotubes

classification cond-mat.mes-hall
keywords nanotubescarbonelectronfunctionswavediscreteenergylevels
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Carbon nanotubes provide a unique system to study one-dimensional quantization phenomena. Scanning tunneling microscopy is used to observe the electronic wave functions that correspond to quantized energy levels in short metallic carbon nanotubes. Discrete electron waves are apparent from periodic oscillations in the differential conductance as a function of the position along the tube axis, with a period that differs from that of the atomic lattice. Wave functions can be observed for several electron states at adjacent discrete energies. The measured wavelengths are in good agreement with the calculated Fermi wavelength for armchair nanotubes.

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