IJ
IJCRM
International Journal of Contemporary Research in Multidisciplinary
ISSN: 2583-7397
Open Access • Peer Reviewed
Impact Factor: 5.67

International Journal of Contemporary Research In Multidisciplinary, 2026;5(1):112-119

Electron-Induced Ionization of the Boron Monochloride Molecule

Author Name: Vanshika;   Rajeev Kumar;   Manoj Kumar;   Rajeev Kaushik;  

1. Department of Physics, D. J. College, Baraut, Baghpat, Uttar Pradesh, India

2. Department of Physics, D. J. College, Baraut, Baghpat, Uttar Pradesh, India

3. Department of Physics, M.M.H College, Ghaziabad, Uttar Pradesh, India

4. Department of Physics, S.K.K. Jain College, Khatauli, Muzaffarnagar, Uttar Pradesh, India

Abstract

In the present study, the electron impact ionization characteristics of the (BCl) molecule have been investigated using the semi-empirical Jain–Khare formalism. The total ionization cross sections have been calculated over a wide range of incident electron energies from ionization threshold to 5000eV. In addition to the total ionization cross sections, the optical oscillator strength distribution has been evaluated, as it represents an important input parameter governing the dipole interaction effect in molecular ionization processes. Furthermore, the ionization rate coefficients have been determined by combining the calculated cross sections with the appropriate electron energy Maxwell-Boltzmann distribution, which is particularly relevant for plasma applications.

Keywords

Total ionization cross sections, Oscillator strength, ionization rate coefficients, Jain-Khare semi-empirical approach.