2016•Journals & Books Hosting (International Knowledge Sharing Platform)Open access

Total Electron Scattering Cross Section by Diatomic Molecules

Nia Metyana Wardani, Muhammad Nur, Asep Yoyo Wardaya

Open full text 0 citations

Abstract

Total scattering cross section of electron scattering by diatomic molecule is studied theoretically.Total scattering cross section of electron scattering by diatomic molecule has been calculated via Born Approximation.Model for electron scattering by diatomic H2, S2, and O2 are made.Calculation result is then compared with previously published experimental values by Brunger and Buckman (2002), Naghma et al (2014).Scattering potential involved to represent diatomic molecule is Morse potential.The result shows that the total scattering cross section is decreasing as the incoming electron energy increasing.The calculated value is higher than experimental value.The result shows that below dissociation energy, 4.7 eV, calculated total scattering cross section is increasing as incoming electron energy increasing, might be due to recombination process and detector insensitivity for low energy electron, while for incoming electron energy higher than 4.7 eV, although calculated result gives higher value than experimental result, the experimental data shows similar trend to calculated model.Result is best for energies higher than 60 eV, although still higher than experimental data due to inelastic processes in experimental procedures.Building models for other diatomic molecules and making correction to low energy electron is suggested.

Open-access reader

About this research paper

What this paper is about

Total scattering cross section of electron scattering by diatomic molecule is studied theoretically.Total scattering cross section of electron scattering by diatomic molecule has been calculated via Born Approximation.Model for electron scattering by diatomic H2, S2, and O2 are made.Calculation result is then compared with previously published experimental values by Brunger and Buckman (2002), Naghma et al (2014).Scattering potential involved to represent diatomic molecule is Morse potential.The result shows that the total scattering cross section is decreasing as the incoming electron energy increasing.The calculated value is higher than experimental value.The result shows that below dissociation energy, 4.7 eV, calculated total scattering cross section is increasing as incoming electron energy increasing, might be due to recombination process and detector insensitivity for low energy electron, while for incoming electron energy higher than 4.7 eV, although calculated result gives higher value than experimental result, the experimental data shows similar trend to calculated model.Result is best for energies higher than 60 eV, although still higher than experimental data due to inelastic processes in experimental procedures.Building models for other diatomic molecules and making correction to low energy electron is suggested.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Total scattering cross section of electron scattering by diatomic molecule is studied theoretically.Total scattering cross section of electron scattering by diatomic molecule has been calculated via Born Approximation.Model for electron scattering by diatomic H2, S2, and O2 are made.Calculation result is then compared with previously published experimental values by Brunger and Buckman (2002), Naghma et al (2014).Scattering potential involved to represent diatomic molecule is Morse potential.The result shows that the total scattering cross section is decreasing as the incoming electron energy increasing.The calculated value is higher than experimental value.The result shows that below dissociation energy, 4.7 eV, calculated total scattering cross section is increasing as incoming electron energy increasing, might be due to recombination process and detector insensitivity for low energy electron, while for incoming electron energy higher than 4.7 eV, although calculated result gives higher value than experimental result, the experimental data shows similar trend to calculated model.Result is best for energies higher than 60 eV, although still higher than experimental data due to inelastic processes in experimental procedures.Building models for other diatomic molecules and making correction to low energy electron is suggested.

Key concepts: Diatomic molecule, Scattering, Atomic physics, Electron scattering, Electron, Cross section (physics), Physics, Scattering length

Related papers

Back to paper searchBrowse research topicsOriginal source
Total Electron Scattering Cross Section by Diatomic Molecules — Research Paper | ScholarLens