Theoretical Investigation of Electron–Ion Recombination Process of Mg-like Gold
Abstract
:1. Introduction
2. Theoretical Methods
3. Results and Discussion
3.1. Resonance Energy and Strength
3.2. Rate Coefficients
4. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
References
- Hahn, Y. Electron-ion recombination processes-an overview. Rep. Prog. Phys. 1997, 60, 691. [Google Scholar] [CrossRef]
- Xie, L.Y.; Rui, J.L.; Zhang, J.M.; Schuch, R.; Dong, C.Z. Calculations of electron-impact excitation and dielectronic recombination rate coefficients of highly charged silicon ions. Phys. Rev. A 2022, 105, 012823. [Google Scholar] [CrossRef]
- Massey, H.S.W.; Bates, D.R. Bates. The properties of neutral and ionized atomic oxygen and their influence on the upper atmosphere. Rep. Prog. Phys. 1942, 9, 62. [Google Scholar] [CrossRef]
- Müller, A. Electron-ion collisions: Fundamental processes in the focus of applied research. Adv. At. Mol. Opt. Phys. 2008, 55, 293. [Google Scholar]
- Dubau, J.; Volonte, S. Dielectronic recombination and its applications in astronomy. Rep. Prog. Phys. 1980, 43, 199. [Google Scholar] [CrossRef]
- Jacobs, V.L.; Decaux, V.; Beiersdorfer, P. Kα emission in equilibrium and non-equilibrium plasmas. J. Quant. Spectrose. Radtat. Transfer. 1997, 58, 645–659. [Google Scholar] [CrossRef]
- Gabriel, A.H.; Paget, T.M. Measurement and interpretation of dielectronic recombination satellite line intensities. J. Phys. B At. Mol. Phys. Vol. 1972, 5, 673. [Google Scholar] [CrossRef]
- Shah, C.; Amaro, P.; Steinbrügge, R.; Bernitt, S.; López-Urrutia, J.C.; Tashenov, S. Polarization of K-shell Dielectronic Recombination Satellite Lines of Fe xix–xxv and Its Application for Diagnostics of Anisotropies of Hot Plasmas. Astrophys. J. Suppl. Ser. 2018, 234, 27. [Google Scholar] [CrossRef]
- Griem, H.R. Plasma spectroscopy in inertial confinement fusion and soft X-ray laser research. Phys. Fluids B. 1992, 4, 2346. [Google Scholar] [CrossRef]
- Lindl, J. Development of the indirect-drive approach to inertial confinement fusion and the target physics basis for ignition and gain. Phys. Plasmas 1995, 2, 3933. [Google Scholar] [CrossRef]
- Wu, Z.W.; Dong, C.Z.; Jiang, J. Degrees of polarization of the two strongest 5f→3d lines following electron-impact excitation and dielectronic recombination processes of Cu-like to Se-like gold ions. Phys. Rev. A 2012, 86, 022712. [Google Scholar] [CrossRef]
- Brown, G.V.; Hansen, S.B.; Träbert, E.; Beiersdorfer, P.; Widmann, K.; Chen, H.; Chung, H.K.; Clementson, J.H.T.; Gu, M.F.; Thorn, D.B. Investigation of the 2p3/2-3d5/2 line emission of Au53+-Au69+ for diagnosing high energy density plasmas. Phys. Rev. E 2008, 77, 066406. [Google Scholar] [CrossRef] [PubMed]
- Bowen, C.; Kaiser, P. Dielectronic recombination in Au ionisation temperature calculations. J. Quant. Spectrosc. Radiat. Transfer. 2003, 81, 85. [Google Scholar] [CrossRef]
- Spies, W.; Müller, A.; Linkemann, J.; Frank, A.; Wagner, M.; Kozhuharov, C.; Franzke, B.; Beckert, K.; Bosch, F.; Eickhoff, H.; et al. Dielectronic and radiative recombination of lithiumlike gold. Phys. Rev. Lett. 1992, 69, 2768–2771. [Google Scholar] [CrossRef] [PubMed]
- Schneider, M.B.; Knapp, D.A.; Chen, M.H.; Scofield, J.H.; Beiersdorfer, P.; Bennett, C.L.; Henderson, J.R.; Levine, M.A.; Marrs, R.E. Measurement of the LMM dielectronic recombination resonances of neonlike gold. Phys. Rev. A 1992, 45, R1291–R1294. [Google Scholar] [CrossRef] [PubMed]
- Liu, X.J.; Qu, Y.Z.; Xiao, B.J.; Wang, J.G. Theoretical studies on dielectronic recombination of neonlike gold and its effects on plasma ionization balance and radiation energy. Eur. Phys. J. D 2009, 55, 57–65. [Google Scholar] [CrossRef]
- Gu, M.F. The flexible atomic code. Can. J. Phys. 2008, 86, 675. [Google Scholar] [CrossRef]
- Yang, J.H.; Cheng, X.L.; Deng, B.L. Detailed level-by-level study of dielectronic recombination for Ne-like gold. Phys. Scr. 2010, 81, 015304. [Google Scholar] [CrossRef]
- Xiong, G.; Zhang, J.Y.; Hu, Z.M.; Nakamura, N.; Li, Y.M.; Han, X.Y.; Yang, J.M.; Zhang, B.H. KLL dielectronic-recombination measurement for Li-like to O-like gold. Phys. Rev. A 2013, 88, 042704. [Google Scholar] [CrossRef]
- Iorga, C.; Stancalie, V. Linear polarization of the dielectronic recombination Kα satellite lines in Li-like Au76+. J. Quant. Spectrosc. Radiat. Transfer. 2019, 224, 206–216. [Google Scholar] [CrossRef]
- Konan, G.G.; Özdemir, L.; Ürer, G. Energy levels and strong electric dipole transitions in magnesium-like gold. J. Quant. Spectrosc. Radiat. Transfer. 2014, 145, 110–120. [Google Scholar] [CrossRef]
- Hamasha, S. Energy levels, wavelengths, and transition rates of multipole transitions (E1, E2, M1, M2) in Au67+ and Au66+ ions. At. Data. Nucl. Data Tables 2013, 99, 595–632. [Google Scholar] [CrossRef]
- Vilkas, M.J.; Ishikawa, Y.; Träbert, E. Relativistic multireference many-body perturbation theory calculations on Au64+–Au69+ ions. Eur. Phys. J. D 2007, 41, 77–93. [Google Scholar] [CrossRef]
- Hamasha, S.; Alshaiub, R. Constructing theoretical M-shell spectra for Mg-like Au through Cl-like Au ions in gold plasma diagnostics. Phys. Scr. 2012, 86, 065302. [Google Scholar] [CrossRef]
- Pindzola, M.S.; Badnell, N.R.; Griffin, D.C. Validity of the independent-processes and isolated-resonance approximations for electron-ion recombination. Phys. Rev. A 1992, 46, 5725–5729. [Google Scholar] [CrossRef]
- Shi, Y.L.; Dong, C.Z.; Zhang, D.H. Theoretical study of the KLL dielectronic recombination for highly charged iodine ions. Phys. Lett. A 2008, 372, 4913–4917. [Google Scholar] [CrossRef]
- Wang, J.G.; Chang, T.Q.; Dong, C.Z.; Kato, T. Calculation of the contributions from high-n dielectronic satellites to the Kα resonance line in helium-like iron. Eur. Phys. J. D 1999, 5, 167. [Google Scholar] [CrossRef]
- Nakamura, N. Breit interaction effect on dielectronic recombination of heavy ions. J. Phys. B At. Mol. Opt. Phys. 2016, 49, 212001. [Google Scholar] [CrossRef]
- Bernhardt, D.; Brandau, C.; Harman, Z.; Kozhuharov, C.; Müller, A.; Scheid, W.; Schippers, S.; Schmidt, E.W.; Yu, D.; Artemyev, A.N.; et al. Breit interaction in dielectronic recombination of hydrogenlike uranium. Phys. Rev. A 2011, 83, 020701. [Google Scholar] [CrossRef]
- Behar, E.; Mandelbaum, P.; Schwob, J.L. Dielectronic recombination of Ne-like tungsten. Phys. Rev. A 1999, 54, 2787–2793. [Google Scholar] [CrossRef]
- Kozioł, K. Breit and QED contributions in atomic structure calculations of tungsten ions. J. Quant. Spectrosc. Radiat. Transfer. 2020, 242, 106772. [Google Scholar] [CrossRef]
- Kramida, A.; Ralchenko, Y.; Reader, J.; Team, N.A. NIST Atomic Spectra Database; ver. 5.5.6; National Institute of Standards and Technology: Gaithersburg, MD, USA, 2018. Available online: https://physics.nist.gov/asd (accessed on 3 May 2018).
- Xie, L.Y.; Pan, J.P.; Zhang, D.H.; Jiang, J.; Dong, C.Z. Theoretical investigation of electron-ion recombination process of Fe14+ ion. J. Phys. Conf. Ser. 2020, 1412, 132032. [Google Scholar] [CrossRef]
- Lukić, D.V.; Schnell, M.; Savin, D.W.; Brandau, C.; Schmidt, E.W.; Böhm, S.; Müller, A.; Schippers, S.; Lestinsky, M.; Sprenger, F.; et al. Dielectronic Recombination of Fe XV Forming Fe XIV: Laboratory Measurements and Theoretical Calculations. Astrophys. J. 2007, 664, 1244. [Google Scholar] [CrossRef]
- Hahn, Y. Theory of dielectronic recombination. Adv. At. Mol. Phys. 1985, 21, 123. [Google Scholar]
- Behar, E.; Doron, R.; Mandelbaum, P.; Schwob, J.L. General analytic formula for total dielectronic recombination rate coefficients of Ni-like ions. Phys. Rev. A 1998, 58, 2115–2120. [Google Scholar] [CrossRef]
Label | Level | P | 2J | This Work | EMRMP [23] | EFAC [24] | |
---|---|---|---|---|---|---|---|
Model A | Model B | ||||||
0 | [3s23p1/2]1/2 | 1 | 1 | 0.00 | 0.00 | 0.00 | 0.00 |
1 | [3s1/2(3p21/2)0]1/2 | 0 | 1 | 187.30 | 186.88 | 186.55 | 186.59 |
2 | [3s23p3/2]3/2 | 1 | 3 | 498.12 | 498.13 | 497.56 | 497.92 |
3 | [(3s1/23p1/2)03p3/2]3/2 | 0 | 3 | 651.39 | 651.11 | 650.59 | 650.47 |
4 | [(3s1/23p1/2)13p3/2]5/2 | 0 | 5 | 671.60 | 671.27 | 670.55 | 670.72 |
5 | [(3s1/23p1/2)13p3/2]3/2 | 0 | 3 | 693.58 | 693.22 | 692.65 | 692.80 |
6 | [(3s1/23p1/2)13p3/2]1/2 | 0 | 1 | 705.64 | 705.04 | 703.97 | 704.87 |
7 | [3s23d3/2]3/2 | 0 | 3 | 753.39 | 753.22 | 752.41 | 753.34 |
8 | [3s23d5/2]5/2 | 0 | 5 | 853.55 | 853.56 | 853.25 | 853.16 |
9 | [(3s1/23p1/2)03d3/2]3/2 | 1 | 3 | 874.47 | 874.03 | 873.93 | 873.24 |
10 | [(3p21/2)03p3/2]3/2 | 1 | 3 | 888.73 | 888.17 | 887.10 | 887.50 |
11 | [(3s1/23p1/2)13d3/2]5/2 | 1 | 5 | 900.18 | 899.62 | 899.32 | 898.92 |
12 | [(3s1/23p1/2)13d3/2]1/2 | 1 | 1 | 929.65 | 928.98 | 928.40 | 928.72 |
13 | [(3s1/23p1/2)13d3/2]3/2 | 1 | 3 | 938.51 | 937.75 | 936.90 | 937.52 |
14 | [(3s1/23p1/2)03d5/2]5/2 | 1 | 5 | 1011.01 | 1010.55 | 1010.34 | 1009.69 |
15 | [(3s1/23p1/2)13d5/2]7/2 | 1 | 7 | 1027.34 | 1026.79 | 1026.38 | 1026.02 |
16 | [(3s1/23p1/2)13d5/2]5/2 | 1 | 5 | 1038.59 | 1037.87 | 1037.29 | 1037.13 |
17 | [(3s1/23p1/2)13d5/2]3/2 | 1 | 3 | 1043.58 | 1042.73 | 1042.01 | 1042.10 |
18 | [(3p21/2)03d3/2]3/2 | 0 | 3 | 1108.54 | 1107.64 | 1106.72 | 1106.85 |
19 | [3s1/2(3p23/2)2]5/2 | 0 | 5 | 1162.12 | 1161.84 | 1160.57 | 1161.11 |
20 | [3s1/2(3p23/2)0]1/2 | 0 | 1 | 1203.57 | 1203.16 | 1201.43 | 1202.58 |
21 | [3s1/2(3p23/2)2]3/2 | 0 | 3 | 1211.30 | 1210.73 | 1209.00 | 1210.42 |
22 | [(3p21/2)03d5/2]5/2 | 0 | 5 | 1236.64 | 1235.60 | 1234.60 | 1234.74 |
23 | [3p1/2(3p23/2)2]5/2 | 1 | 5 | 1366.07 | 1365.57 | 1364.44 | 1364.61 |
24 | [3p1/2(3p23/2)2]3/2 | 1 | 3 | 1372.71 | 1371.98 | 1370.40 | 1371.25 |
25 | [3p1/2(3p23/2)0]1/2 | 1 | 1 | 1391.08 | 1390.52 | 1389.35 | 1389.68 |
26 | [(3s1/23p3/2)23d3/2]3/2 | 1 | 3 | 1398.52 | 1398.00 | 1397.05 | 1397.30 |
27 | [(3s1/23p3/2)23d3/2]1/2 | 1 | 1 | 1400.65 | 1400.21 | 1398.81 | 1399.45 |
28 | [(3s1/23p3/2)23d3/2]5/2 | 1 | 5 | 1404.78 | 1404.08 | 1402.80 | 1403.45 |
29 | [(3s1/23p3/2)23d3/2]7/2 | 1 | 7 | 1406.40 | 1405.83 | 1404.84 | 1405.08 |
30 | [(3s1/23p3/2)13d3/2]3/2 | 1 | 3 | 1438.22 | 1437.36 | 1436.11 | 1436.97 |
31 | [(3s1/23p3/2)13d3/2]5/2 | 1 | 5 | 1451.57 | 1450.59 | 1448.92 | 1450.39 |
32 | [(3s1/23p3/2)13d3/2]1/2 | 1 | 1 | 1458.44 | 1457.30 | 1455.55 | 1457.12 |
33 | [(3s1/23p3/2)23d5/2]9/2 | 1 | 9 | 1486.85 | 1486.47 | 1485.85 | 1485.18 |
34 | [(3s1/23p3/2)23d5/2]5/2 | 1 | 5 | 1511.58 | 1511.07 | 1510.17 | 1510.04 |
2862 | [2p−13/2(3p23/2)0]3/2 | 1 | 3 | 10,550.33 | 10,546.42 | ||
3020 | [(2p−13/23d3/2)13d5/2]7/2 | 1 | 7 | 11,098.31 | 11,100.03 | ||
3027 | [(2p−13/23d3/2)13d5/2]5/2 | 1 | 5 | 11,105.31 | 11,109.64 | ||
3031 | [(2p−13/23d3/2)33d5/2]7/2 | 1 | 7 | 11,106.17 | 11,117.51 | ||
3043 | [(2p−13/23d3/2)23d5/2]5/2 | 1 | 5 | 11,122.38 | 11,136.88 | ||
3723 | [(2s−11/23p1/2)13d5/2]7/2 | 1 | 7 | 12,801.01 | 12,794.46 | ||
3763 | [2p−11/2(3d23/2)2]5/2 | 1 | 5 | 12,858.35 | 12,884.54 | ||
3819 | [(2p−11/23d3/2)13d5/2]7/2 | 1 | 7 | 13,002.84 | 13,015.12 |
LMn | Intermediate Excited State | Eid (eV) | Aa (s−1) | Γd (s−1) | Brd | Sid (10−19 cm2 eV) |
---|---|---|---|---|---|---|
LMM | [(2p−13/23p1/2)23p3/2]7/2 | 2102.6 | 9.94 (12) | 1.70 (14) | 0.88 | 0.83 |
[(2p−13/23p1/2)23p3/2]1/2 | 2176.1 | 7.17 (14) | 1.86 (15) | 0.11 | 1.74 | |
[(2p−13/23p1/2)23d5/2]9/2 | 2446.4 | 1.81 (13) | 1.74 (14) | 0.83 | 1.52 | |
[(2p−13/23p1/2)23d5/2]1/2 | 2493.9 | 7.03 (13) | 3.88 (15) | 0.96 | 1.34 | |
[(2p−13/23p1/2)13d5/2]3/2 | 2494.2 | 7.57 (13) | 3.88 (15) | 0.97 | 2.90 | |
[2p−13/2(3p23/2)0]3/2 | 2635.5 | 1.47 (13) | 1.84 (14) | 0.84 | 0.47 | |
[2p−13/2(3p23/2)2]3/2 | 2664.4 | 4.92 (14) | 1.38 (15) | 0.14 | 2.49 | |
[(2p−13/23p3/2)33d3/2]9/2 | 2841.7 | 1.49 (13) | 1.77 (14) | 0.80 | 1.04 | |
[(2p−13/23p3/2)03d3/2]3/2 | 2923.4 | 3.93 (14) | 1.58 (15) | 0.14 | 1.90 | |
[(2p−13/23p3/2)33d5/2]9/2 | 2966.1 | 1.29 (13) | 1.71 (14) | 0.84 | 0.90 | |
[(2p−13/23p3/2)33d5/2]5/2 | 2980.8 | 8.71 (13) | 1.28 (15) | 0.90 | 3.93 | |
[(2p−13/23p3/2)23d5/2]5/2 | 3001.6 | 6.79 (13) | 2.58 (15) | 0.96 | 3.21 | |
[(2p−13/23p3/2)33d5/2]3/2 | 3006.0 | 4.62 (13) | 3.63 (15) | 0.97 | 1.47 | |
[(2p−13/23p3/2)33d5/2]1/2 | 3010.1 | 1.21 (14) | 3.61 (15) | 0.95 | 1.90 | |
[(2p−13/23p3/2)03d5/2]5/2 | 3031.3 | 2.67 (14) | 1.63 (15) | 0.27 | 3.48 | |
[(((2p−13/23s−11/2)23p1/2)3/23p3/2)13d5/2]7/2 * | 3149.2 | 7.77 (12) | 1.56 (14) | 0.86 | 0.42 | |
[(2p−13/23d3/2)13d5/2]7/2 | 3189.1 | 2.84 (13) | 7.49 (14) | 0.43 | 0.76 | |
[(((2p−13/23s−11/2)13p1/2)1/23p3/2)13d5/2]5/2 * | 3190.0 | 8.22 (13) | 2.73 (15) | 0.90 | 3.44 | |
[(2p−13/23d3/2)13d5/2]5/2 | 3198.7 | 4.60 (13) | 1.18 (15) | 0.69 | 1.47 | |
[(2p−13/23d3/2)33d5/2]7/2 | 3206.6 | 1.10 (13) | 1.93 (14) | 0.68 | 0.46 | |
[(2p−13/23d3/2)33d5/2]5/2 | 3218.0 | 4.80 (13) | 9.54 (14) | 0.31 | 0.68 | |
[(2p−13/23d3/2)23d5/2]7/2 | 3222.7 | 2.21 (13) | 6.47 (14) | 0.32 | 0.44 | |
[(2p−13/23d3/2)13d5/2]5/2 | 3252.3 | 5.81 (14) | 4.36 (15) | 0.81 | 21.61 | |
[(2p−13/23d3/2)33d5/2]1/2 | 3256.4 | 6.99 (13) | 4.05 (15) | 0.96 | 1.02 | |
[2p−13/2(3d25/2)2]7/2 | 3315.7 | 1.97 (14) | 8.30 (14) | 0.73 | 8.58 | |
[2p−13/2(3d25/2)4]7/2 | 3338.5 | 2.40 (14) | 1.86 (15) | 0.85 | 12.08 | |
[2p−13/2(3d25/2)4]5/2 | 3358.0 | 5.89 (13) | 4.53 (15) | 0.97 | 2.53 | |
[2p−13/2(3d25/2)0]3/2 | 3363.5 | 9.25 (13) | 3.16 (15) | 0.95 | 2.59 | |
2p−11/2 | 3491.0 | 2.49 (14) | 5.99 (14) | 0.15 | 0.52 | |
[(2p−11/23p1/2)03p3/2]3/2 | 4017.6 | 3.32 (14) | 9.27 (14) | 0.10 | 0.85 | |
[(2p−11/23p1/2)13d3/2]1/2 | 4256.9 | 3.85 (13) | 1.62 (15) | 0.92 | 0.41 | |
[(2p−11/23p1/2)03d3/2]3/2 | 4260.7 | 1.29 (14) | 8.93 (14) | 0.32 | 0.96 | |
[(2p−11/23p1/2)03d5/2]5/2 | 4369.2 | 1.50 (14) | 7.62 (14) | 0.14 | 0.70 | |
[(2p−11/23p3/2)23d3/2]5/2 | 4741.1 | 8.88 (13) | 1.99 (15) | 0.93 | 2.58 | |
[(2s−11/23p1/2)13d5/2]7/2 | 4883.5 | 2.12 (13) | 9.67 (14) | 0.60 | 0.51 | |
[(((2p−11/23s−11/2)13p1/2)1/23p3/2)13d3/2]5/2 * | 4949.5 | 3.10 (13) | 1.72 (15) | 0.75 | 0.69 | |
[2p1/2(3d23/2)2]5/2 | 4973.6 | 3.18 (13) | 5.69 (14) | 0.49 | 0.47 | |
[(((2p−11/23s−11/2)13p1/2)1/23p3/2)13d5/2]7/2 * | 5055.5 | 5.28 (13) | 1.09 (15) | 0.40 | 0.83 | |
[(2p−11/23d3/2)13d5/2]7/2 | 5104.2 | 2.07 (14) | 1.91 (15) | 0.84 | 6.73 | |
LMN | [(2p−13/23p1/2)24p3/2]1/2 | 5496.9 | 1.60 (14) | 5.29 (14) | 0.29 | 0.41 |
[(2p−13/23p1/2)14d5/2]3/2 | 5623.1 | 3.09 (13) | 1.43 (15) | 0.96 | 0.52 | |
LMM | [(2s−11/23d3/2)23d5/2]9/2 | 5640.6 | 5.08 (13) | 6.92 (14) | 0.33 | 0.74 |
[(2s−11/23d3/2)13d5/2]7/2 | 5653.7 | 6.00 (13) | 5.16 (14) | 0.29 | 0.61 | |
LMN | [(2p−13/23p3/2)34p3/2]3/2 | 6004.1 | 1.08 (14) | 4.14 (14) | 0.39 | 0.69 |
[(2p−13/23p3/2)04p3/2]3/2 | 6052.7 | 1.82 (14) | 1.46 (15) | 0.35 | 1.03 | |
[(2p−13/23p3/2)34d5/2]5/2 | 6121.2 | 1.82 (13) | 3.48 (14) | 0.91 | 0.40 | |
[(2p−13/23p3/2)04d3/2]3/2 | 6137.9 | 7.77 (13) | 1.45 (15) | 0.46 | 0.57 | |
[(2p−13/23d5/2)14p1/2]3/2 | 6168.4 | 7.40 (13) | 3.41 (15) | 0.93 | 1.10 | |
[(2p−13/23p3/2)04d5/2]5/2 | 6188.3 | 5.93 (13) | 1.18 (15) | 0.29 | 0.41 | |
[(2p−13/23d3/2)24p3/2]3/2 | 6246.4 | 4.89 (13) | 1.68 (15) | 0.85 | 0.66 | |
[(2p−13/23d5/2)44p3/2]5/2 | 6336.1 | 3.87 (13) | 2.82 (14) | 0.71 | 0.65 | |
[(2p−13/23d5/2)34p3/2]5/2 | 6349.7 | 6.99 (13) | 5.30 (14) | 0.61 | 1.00 | |
[(2p−13/23d5/2)44d3/2]7/2 | 6408.9 | 1.67 (13) | 2.05 (14) | 0.85 | 0.44 | |
[(2p−13/23d5/2)44d5/2]5/2 | 6454.7 | 5.42 (13) | 9.45 (14) | 0.91 | 1.14 | |
[(2p−13/23d5/2)14d3/2]5/2 | 6458.0 | 2.23 (14) | 3.38 (15) | 0.92 | 4.70 | |
[(2p−13/23d5/2)44d5/2]7/2 | 6466.8 | 7.58 (13) | 4.78 (14) | 0.81 | 1.87 | |
[(((2p−13/23s−11/2)23p1/2)5/23d5/2)54p3/2]7/2 * | 6485.0 | 1.99 (13) | 3.06 (14) | 0.80 | 0.49 | |
[(((2p−13/23s−11/2)13p1/2)1/23d5/2)34p3/2]7/2 * | 6497.5 | 1.74 (13) | 1.28 (15) | 0.96 | 0.51 | |
[(2p−13/23d5/2)14d5/2]7/2 | 6499.9 | 5.72 (13) | 1.83 (15) | 0.95 | 1.65 | |
[(2p−13/23d5/2)14d5/2]3/2 | 6503.2 | 3.93 (13) | 2.86 (15) | 0.96 | 0.57 | |
[(2p−13/23d5/2)14f5/2]7/2 | 6573.5 | 1.02 (14) | 3.41 (15) | 0.95 | 2.93 | |
[(2p−13/23d5/2)14f7/2]9/2 | 6588.0 | 8.27 (13) | 3.13 (15) | 0.96 | 2.97 | |
[(2p−13/23d5/2)14f7/2]7/2 | 6592.8 | 1.51 (13) | 3.53 (15) | 0.98 | 0.44 | |
LMO | [(2p−13/23d5/2)25d5/2]7/2 | 7901.0 | 3.64 (13) | 3.67 (14) | 0.87 | 0.79 |
[(2p−13/23d5/2)15d3/2]5/2 | 7914.0 | 7.20 (13) | 3.20 (15) | 0.96 | 1.30 | |
[(2p−13/23d5/2)15d5/2]7/2 | 7940.1 | 4.95 (13) | 3.99 (15) | 0.97 | 1.20 | |
[(2p−13/23d5/2)15f5/2]7/2 | 7972.6 | 7.78 (13) | 3.86 (15) | 0.96 | 1.86 | |
[(2p−13/23d5/2)15f7/2]9/2 | 7980.4 | 5.49 (13) | 3.81 (15) | 0.97 | 1.65 | |
LMN | [(2p−11/23d3/2)14d5/2]7/2 | 8262.6 | 2.25 (13) | 1.44 (15) | 0.90 | 0.49 |
[(2p−11/23d5/2)24d3/2]7/2 | 8299.1 | 8.76 (13) | 1.08 (15) | 0.83 | 1.74 | |
LMP | [(2p−13/23p3/2)06d3/2]3/2 | 8390.7 | 4.76 (13) | 2.70 (14) | 0.79 | 0.45 |
[(2p−13/23d5/2)16d3/2]5/2 | 8701.6 | 5.83 (13) | 3.76 (15) | 0.98 | 0.98 | |
[(2p−13/23d5/2)16f5/2]7/2 | 8733.0 | 4.82 (13) | 3.76 (15) | 0.99 | 1.08 | |
[(2p−13/23d5/2)16f7/2]9/2 | 8737.9 | 3.28 (13) | 3.76 (15) | 0.99 | 0.92 | |
LMQ | [(2p−13/23d5/2)17d3/2]5/2 | 9171.3 | 3.34 (13) | 3.65 (15) | 0.99 | 0.54 |
[(2p−13/23d5/2)17f5/2]7/2 | 9191.3 | 2.82 (13) | 3.67 (15) | 0.99 | 0.60 | |
[(2p−13/23d5/2)17f7/2]9/2 | 9194.4 | 2.04 (13) | 3.74 (15) | 0.99 | 0.55 | |
LMR | [(2p−13/23d5/2)18f5/2]7/2 | 9488.2 | 1.96 (13) | 3.75 (15) | 0.99 | 0.41 |
LMO | [(2p−11/23d3/2)15d5/2]7/2 | 9697.5 | 2.29 (13) | 1.36 (15) | 0.86 | 0.40 |
[(2p−11/23d5/2)25d3/2]7/2 | 9751.3 | 2.53 (13) | 4.82 (14) | 0.89 | 0.46 |
ci (cm3 s−1 eV3/2) | Ei (eV) | |
---|---|---|
1 | −2.16 (-6) | 8383.89 |
2 | 1.23 (-6) | 11,563.12 |
3 | 7.80 (-7) | 3224.54 |
4 | 2.56 (-6) | 5934.46 |
5 | 6.62 (-6) | 8729.08 |
6 | 1.09 (-6) | 3260.14 |
7 | 1.94 (-7) | 2362.51 |
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Xie, L.; He, W.; Niu, S.; Rui, J.; Ma, Y.; Dong, C. Theoretical Investigation of Electron–Ion Recombination Process of Mg-like Gold. Atoms 2023, 11, 76. https://doi.org/10.3390/atoms11050076
Xie L, He W, Niu S, Rui J, Ma Y, Dong C. Theoretical Investigation of Electron–Ion Recombination Process of Mg-like Gold. Atoms. 2023; 11(5):76. https://doi.org/10.3390/atoms11050076
Chicago/Turabian StyleXie, Luyou, Wenliang He, Shengbo Niu, Jinglin Rui, Yulong Ma, and Chenzhong Dong. 2023. "Theoretical Investigation of Electron–Ion Recombination Process of Mg-like Gold" Atoms 11, no. 5: 76. https://doi.org/10.3390/atoms11050076
APA StyleXie, L., He, W., Niu, S., Rui, J., Ma, Y., & Dong, C. (2023). Theoretical Investigation of Electron–Ion Recombination Process of Mg-like Gold. Atoms, 11(5), 76. https://doi.org/10.3390/atoms11050076