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Quantitative Evaluation of Spatial Coherence of the Electron Beam from Low Temperature Field Emitters
84
Citations
9
References
2004
Year
EngineeringElectron DiffractionElectron PhysicElectron SpectroscopyNanoelectronicsInstrumentationCarbon NanotubesMaterials SciencePhysicsTransverse Coherence LengthAtomic PhysicsQuantum ChemistrySynchrotron RadiationElectron BeamNatural SciencesApplied PhysicsCondensed Matter PhysicsSpatial CoherenceNanotubesTungsten TipsBeam Transport SystemQuantitative Evaluation
By using multiwalled carbon nanotubes as an element of a nanobiprism, we evaluated quantitatively the coherence of electrons emitted from tungsten tips at room temperature and 78 K, and found an enhancement of coherence at 78 K. The increase of the transverse coherence length of the electron beam agreed well with that of the inelastic mean free path of electrons in solids, demonstrating the direct relationship between the coherences of the electron beam and the original electronic states. On the basis of this experimental fact, we comment on the interpretation of recent Hanbury Brown-Twiss type experiments for electrons reported by Kiesel et al. [Nature (London) 418, 392 (2002)]].
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