Cascade energy reemission by the silver atom ionized by 0.01–100 keV photons. Possible application of silver-based radiosensitizing agents in photon beam radiation therapy

IF 1.8 4区 物理与天体物理 Q2 SPECTROSCOPY Journal of Electron Spectroscopy and Related Phenomena Pub Date : 2024-07-18 DOI:10.1016/j.elspec.2024.147472
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Abstract

A method of straightforward construction and analysis of the cascade decay trees is applied to study the cascade energy reemission by silver atoms upon photoionization in the incident photon energy range of 0.01–100 keV. Cascade electrons and photons emitted during the cascade relaxation of an inner-shell vacancy carry away a significant part of the energy initially acquired by the silver atom in a photoionization act. The energies redistributed through following channels were calculated as functions of incident photon energy: energy absorbed by the silver atom itself (a), and energies carried away by the cascade electrons (b) and photons (c). Channel (a) is dominant only at small incident photon energies up to the M5 ionization threshold. Channel (b) dominates between M and K thresholds making 57–85 % of the acquired energy. Above the K threshold, the weight of channel (b) is still significant, 24 %, however, dominant is channel (c).

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被 0.01-100 千伏光子电离的银原子的级联能量再发射。银基放射增敏剂在光子束放射治疗中的可能应用
我们采用一种直接构建和分析级联衰变树的方法,研究了银原子在 0.01-100 keV 入射光子能量范围内光电离时的级联能量再发射。内壳空位级联弛豫过程中发射的级联电子和光子带走了银原子在光离子化过程中最初获得的大部分能量。作为入射光子能量的函数,计算了通过以下途径重新分配的能量:银原子本身吸收的能量(),以及级联电子()和光子()带走的能量。只有在入射光子能量较小直至电离阈值时,通道()才占主导地位。在阈值和阈值之间,通道()占主导地位,占获取能量的 57-85%。在阈值以上,通道()的比重仍然很大,占 24%,但占主导地位的是通道()。
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来源期刊
CiteScore
3.30
自引率
5.30%
发文量
64
审稿时长
60 days
期刊介绍: The Journal of Electron Spectroscopy and Related Phenomena publishes experimental, theoretical and applied work in the field of electron spectroscopy and electronic structure, involving techniques which use high energy photons (>10 eV) or electrons as probes or detected particles in the investigation.
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