Bremsstrahlung induced atomic processes
Shashank Singh, Narendra Kumar, Soumya Chatterjee, Deepak Swami, Manpreet Kaur, Alok Kumar Singh Jha, Mumtaz Oswal, K. P. Singh, T. Nandi

TL;DR
This study investigates bremsstrahlung-induced atomic processes during neon-aluminum collisions, revealing unexpected ionization phenomena and spectral features that could impact plasma physics and astrophysics research.
Contribution
It provides the first detailed analysis of bremsstrahlung-induced secondary ionization effects and spectral line modifications in high-energy ion collisions.
Findings
Kαα lines observed only at 1.8 MeV in projectile ions
Enhanced Kαα line intensities in target ions at 2.1 MeV
Strong suppression of Al K x-ray line intensities
Abstract
The observed spectra in the collisions of neon (Ne) projectiles of 1.8 and 2.1 MeV with an aluminum target (Al) have been successfully segregated from strong bremsstrahlung backgrounds and then analyzed by comparing the transition energies and rates with the theoretical predictions of the flexible atomic structure code and the general purpose relativistic atomic structure package. The spectra contain K{\alpha}, Kh{\alpha} , and K{\alpha}{\alpha} lines. The K{\alpha}{\alpha} emissions are due to two-electron one-photon transitions. Interestingly, the K{\alpha}{\alpha} lines in projectile ions are only seen with 1.8 MeV energy. In contrast, the K{\alpha}{\alpha} lines in the target ions are also well observed with 2.1 MeV energy. Surprisingly, the Al K x-ray line intensities are strongly suppressed, and the K{\alpha}{\alpha} line intensities are unexpectedly enhanced. The underlying…
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Taxonomy
TopicsAtomic and Molecular Physics · Radiation Therapy and Dosimetry · Radiation Shielding Materials Analysis
