1997•Journal of Physics B Atomic Molecular and Optical PhysicsRequires access

Low-energy electron scattering from methane

Christoph T Bundschu, Jennifer C. Gibson, R J Gulley, M. J. Brunger, Stephen J. Buckman, Nico Sanna, Franco Antonio Gianturco

Open publisher page 50 citations

Abstract

Absolute differential cross sections for elastic scattering and vibrational excitation of have been measured at incident energies between 0.6 and 5.4 eV. These cross sections have also been extrapolated and integrated in order to derive integral and momentum transfer cross sections which are compared with the results of previous single-collision and electron swarm experiments. Elastic differential cross sections have also been calculated using a body-fixed (BF), single-centre expansion (SCE) for the close-coupled (CC) equations. There is excellent agreement between the present data and the most recent elastic scattering results of Boesten and Tanaka, but substantial discrepancies between these two data sets and several previous measurements. There is also excellent agreement at most energies between the present measured and calculated elastic cross sections.

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What this paper is about

Absolute differential cross sections for elastic scattering and vibrational excitation of have been measured at incident energies between 0.6 and 5.4 eV. These cross sections have also been extrapolated and integrated in order to derive integral and momentum transfer cross sections which are compared with the results of previous single-collision and electron swarm experiments. Elastic differential cross sections have also been calculated using a body-fixed (BF), single-centre expansion (SCE) for the close-coupled (CC) equations. There is excellent agreement between the present data and the most recent elastic scattering results of Boesten and Tanaka, but substantial discrepancies between these two data sets and several previous measurements. There is also excellent agreement at most energies between the present measured and calculated elastic cross sections.

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Available abstract

Absolute differential cross sections for elastic scattering and vibrational excitation of have been measured at incident energies between 0.6 and 5.4 eV. These cross sections have also been extrapolated and integrated in order to derive integral and momentum transfer cross sections which are compared with the results of previous single-collision and electron swarm experiments. Elastic differential cross sections have also been calculated using a body-fixed (BF), single-centre expansion (SCE) for the close-coupled (CC) equations. There is excellent agreement between the present data and the most recent elastic scattering results of Boesten and Tanaka, but substantial discrepancies between these two data sets and several previous measurements. There is also excellent agreement at most energies between the present measured and calculated elastic cross sections.

Key concepts: Elastic scattering, Nuclear cross section, Excitation, Momentum transfer, Atomic physics, Scattering, Physics, Electron scattering

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