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Elastic electron scattering from 3-hydroxytetrahydrofuran: experimental and theoretical studies

V Vizcaino et al 2008 New J. Phys. 10 053002 (10pp)   doi: 10.1088/1367-2630/10/5/053002  Help

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V Vizcaino1, J Roberts1,2, J P Sullivan1, M J Brunger2, S J Buckman1, C Winstead3 and V McKoy3
1 Centre for Antimatter-Matter Studies, AMPL, RSPhysSE, Australian National University, 0200 Canberra, Australia
2 Centre for Antimatter-Matter Studies, SOCPES, Flinders University, GPO Box 2100, Adelaide 5001, South Australia
3 A A Noyes Laboratory of Chemical Physics, California Institute of Technology, Pasadena, CA 91125, USA
E-mail: Stephen.buckman@anu.edu.au and carl@schwinger.caltech.edu

Abstract. We report the results of measurements and calculations for elastic electron scattering from 3-hydroxytetrahydrofuran (C4H8O2). The measurements are performed with a crossed electron-target beam apparatus and the absolute cross-sections are determined using the relative flow technique. The calculations are carried out using the Schwinger multichannel method in the static-exchange plus polarization (SEP) approximation. A set of angular differential cross-sections (DCS) is provided at five incident energies (6.5, 8, 10, 15 and 20 eV) over an angular range of 20–130°, and the energy dependence of the elastic DCS at a scattering angle of 120° is also presented. Integral elastic and elastic momentum transfer cross-sections have also been derived and calculated. The results are compared with those of recent measurements and calculations for the structurally similar molecule tetrahydrofuran (C4H8O).

Received 4 March 2008
Published 6 May 2008

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