Generalized oscillator strengths and integral cross sections for the valence shell excitations of trichlorofluoromethane studied by fast electron impact

IF 1.5 4区 物理与天体物理 Q3 OPTICS
Muhammad Meesum Bilal, Jin-Feng Chen, Zhi-Wei Nie, Jian-Hui Zhu, Lin-Fan Zhu
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引用次数: 0

Abstract

Oscillator strengths and cross sections of the valence-shell excitations in trichlorofluoromethane CFCl\(_{3}\) are of great importance in plasma etching and monitoring the greenhouse effect. In this work, the valence-shell excitations of CFCl\(_{3}\) have been studied by an angle-resolved electron energy loss spectrometer operated at a collision energy of 1.5 keV with an energy resolution of about 80 meV. Generalized oscillator strengths of the electronically excited states have been determined at an absolute scale by applying the crossed-beam based on the relative flow technique. The behaviors of generalized oscillator strengths of the valence shell excitations of CFCl\(_{3}\) have been analyzed. By extrapolating the generalized oscillator strengths to the zero limit of squared momentum transfer, the optical oscillator strengths have been obtained. The BE-scaled integral cross sections of the valence-shell excitations of CFCl\(_{3}\) have been derived from the excitation thresholds to 5000 eV with the help of BE-scaling method. The present oscillator strengths and cross sections supplement the fundamental database of CFCl\(_{3}\).

Left panel: a schematic diagram of electron energy loss spectrometer. Right panel: the typical electron-energy-loss-spectra of the valence-shell excitations of CFCl\(_3\) at an incident electron energy of 1500 eV and the scattering angles of (a) 1.5\(\circ \) and (b) 4.5\(\circ \). The valence excitations and Rydberg transitions are marked as vertical bars. (c) A 2-dimensional map of the GOS density of CFCl\(_3\) vs. the energy-loss and squared momentum transfer.

通过快速电子碰撞研究三氯氟甲烷价层激发的广义振子强度和积分截面
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来源期刊
The European Physical Journal D
The European Physical Journal D 物理-物理:原子、分子和化学物理
CiteScore
3.10
自引率
11.10%
发文量
213
审稿时长
3 months
期刊介绍: The European Physical Journal D (EPJ D) presents new and original research results in: Atomic Physics; Molecular Physics and Chemical Physics; Atomic and Molecular Collisions; Clusters and Nanostructures; Plasma Physics; Laser Cooling and Quantum Gas; Nonlinear Dynamics; Optical Physics; Quantum Optics and Quantum Information; Ultraintense and Ultrashort Laser Fields. The range of topics covered in these areas is extensive, from Molecular Interaction and Reactivity to Spectroscopy and Thermodynamics of Clusters, from Atomic Optics to Bose-Einstein Condensation to Femtochemistry.
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