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      Time Delay in Electron-C60 Elastic Scattering in a Dirac Bubble Potential Model

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          Abstract

          Within the framework of a Dirac bubble potential model for the C60 fullerene shell, we calculated the time delay in slow-electron elastic scattering by C60. It appeared that the time of transmission of an electron wave packet through the Dirac bubble potential sphere that simulates a real potential of the C60 cage exceeds by more than an order of magnitude the transmission time via a single atomic core. Resonances in the time delays are due to the temporary trapping of electron into quasi-bound states before it leaves the interaction region.

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          Author and article information

          Journal
          24 September 2018
          Article
          1809.08880
          7f143ea7-375d-470b-b87f-b90143cdfb44

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          12 pages, 4 figures
          physics.atm-clus

          Atomic & Molecular physics
          Atomic & Molecular physics

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