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Photoionization of Aluminum-Like P~(2+) and Magnesium-Like P~(3+) by the Screening Constant by Unit Nuclear Charge Method

机译:通过单位核电荷法通过筛选恒定的铝样P〜(2+)和镁状P〜(3+)的光离子型

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In the present work, accurate high lying single photoionization resonance energies for Aluminium-like P~(2+) and magnesium-like P~(3+) are reported. Calculations are performed in the framework of the Screening Constant by Unit Nuclear Charge (SCUNC) formalism. The resonance energies and quantum defects obtained compared very well with experimental data of Hernandez et al., (2015) along with DARC, Dirac Atomic R-matrix Codes computations of Wang et al., (2016). Analysis of the present results is achieved in the framework of the standard quantum-defect theory and of the SCUNC-procedure based on the calculation of the effective charge. It is demonstrated that the SCUNC-method can be used to assist fruitfully experiments for identifying narrow resonance energies due to overlapping peaks. New precise data for Aluminium-like P~(2+) and magnesium-like P~(3+) ions are presented as useful guidelines for investigators focusing their challenge on the Photoionization of aluminum-like P~(2+) and magnesium-like P~(3+) heavy charged ions in connection with their application in laboratory, astrophysics, and plasma physics. In addition, our predicted data up to n = 30 may be of great importance for the atomic physics community in connection with the determination of accurate abundances for phosphorus in the solar photosphere, in solar twins, in the infrared spectrum of Messier 77 galaxy (NGC1068).
机译:在本作工作中,报道了用于铝样P〜(2+)和镁状P〜(3+)的精确高位的单光相加谐振能量。通过单位核电荷(SCUNC)形式主义在筛选常数的框架中进行计算。与Hernandez等人的实验数据相比,获得的共振能量和量子缺陷与王等人,(2015)的实验数据相比,王等人的DIRAC原子r-矩阵码计算。,(2016)。本结果的分析是在标准量子缺陷理论的框架和基于有效充电的计算的框架中实现的。证明SCURC-Method可用于协助效果大写,以识别由于重叠峰值引起的窄谐振能量。用于铝样P〜(2+)和镁状P〜(3+)离子的新精确数据作为调查人员的有用指导,将挑战对铝样P〜(2+)和镁的光相 - 与P〜(3+)重带有其在实验室,天体物理学和血浆物理学中的应用。此外,我们预测的数据高达n = 30可能非常重要,可能对与太阳能拍摄在太阳能双胞胎的太阳照片中的磷的准确丰富的准确丰富,在Messier 77 Galaxy的红外光谱中(NGC1068 )。

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