Plasmon Effects in Non-Diagram X- Ray Spectra of Calcium (Ca) and Cobalt (Co)

Authors

  • Vipin Sharma  Department of Post-Graduate Studies and Research in Physics, Kamla Nehru Institute of Physical and Sciences, Sultanpur, Uttar Pradesh, India
  • Lalit K. Dwivedi  Department of Post-Graduate Studies and Research in Physics, Kamla Nehru Institute of Physical and Sciences, Sultanpur, Uttar Pradesh, India

DOI:

https://doi.org/10.32628/IJSRST52310352

Keywords:

Plasmon Satellites, Bulk Plasmon, Surface Plasmon, Plasmon Coupling

Abstract

In recent years the whole area of high energy excitations in solid has flourished well, both experimentally and theoretically. Their spectroscopy and theoretical understanding have important implications for the knowledge of the structure and properties of materials, both in bulk and near the surface. The theory used in the present work, relates to origin of Non-diagram X-ray spectra in various excitation processes where a deep as well as the surface electron is excited. The specific contributions of the intrinsic as well as the extrinsic ‘Plasmon-coupling’ processes have been obtained theoretically in terms of “Non-diagram-to-parent-diagram X-ray line yield ratios” for the high energy plasmon satellite profiles in the X-ray line spectra of Kα L(0) main lines in Calcium (Ca) and Cobalt (Co) by extending the Bohm-Pines Hamiltonian and using many body theory. It has been shown that the high-energy X-ray satellite line shapes of Calcium (Ca) and Cobalt (Co) observed by Mauron and Douss are due to the Plasmon Oscillations. The theoretically calculated results have been probed by comparing to the relative satellite yields obtained by Mauron and Dousse and are found to agree well with their experimentally observed values.

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Published

2023-06-30

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Research Articles

How to Cite

[1]
Vipin Sharma, Lalit K. Dwivedi "Plasmon Effects in Non-Diagram X- Ray Spectra of Calcium (Ca) and Cobalt (Co)" International Journal of Scientific Research in Science and Technology(IJSRST), Online ISSN : 2395-602X, Print ISSN : 2395-6011,Volume 10, Issue 3, pp.315-319, May-June-2023. Available at doi : https://doi.org/10.32628/IJSRST52310352