A Theoretical Study of Scattering of Electrons and Positrons by CO2 Molecule
Abstract
:1. Introduction
2. Outline of the Theory
2.1. Relativistic Dirac Equation
2.2. Complex Optical Potential
2.3. IAM Approach
2.4. IAMS Approach
3. Results and Discussion
3.1. The Differential Cross-Section
3.2. Sherman Function
3.3. Total Cross-Section
4. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
- Watanabe, T.; Shimamura, I.; Shimizu, M.; Itakawa, Y. (Eds.) Molecular Processes in Space; Plenum: New York, NY, USA, 1990. [Google Scholar]
- Liu, W.; Victor, G.A. Electron energy deposition in carbon monoxide gas. Astro Phys. J. 1994, 435, 909. [Google Scholar] [CrossRef]
- Singh, S.; Dutta, S.; Naghma, R.; Antony, B. Positron scattering from simple molecules. J. Phys. B At. Mol. Opt. Phys. 2017, 50, 135202. [Google Scholar] [CrossRef]
- Christophorou, L.G. (Ed.) Electron Molecule Interactions and Their Applications; Academic: New York, NY, USA, 1984; Volumes 1 and 2. [Google Scholar]
- Jain, A.; Freitas, L.C.G.; Mu-Tao, L.; Tayal, S.S. Elastic scattering of intermediate and high energy electrons with N2 and CO molecules. J. Phys. B At. Mol. Phys. 1984, 17, L29. [Google Scholar] [CrossRef]
- Hassan, R.; Abdullah, M.N.; Shorifuddoza, M.; Khandker, M.H.; Patoary, M.A.; Haque, M.M.; Das, P.K.; Maaza, M.; Billah, M.M.; Haque, A.K.; et al. Scattering of e± off silver atom over the energy range 1 eV–1 MeV. Eur. Phys. J. D 2021, 75, 1–23. [Google Scholar] [CrossRef]
- Afroz, S.; Haque, M.M.; Haque, A.F.; Jakubassa-Amundsen, D.H.; Patoary, M.A.; Shorifuddoza, M.; Khandker, M.H.; Uddin, M.A. Elastic scattering of electrons and positrons from 115In atoms over the energy range 1 eV–0.5 GeV. Results Phys. 2020, 18, 103179. [Google Scholar] [CrossRef]
- Hassan, R.; Haque, M.M.; Haque, A.K.; Shorifuddoza, M.; Khandker, M.H.; Patoary, M.A.; Basak, A.K.; Maaza, M.; Saha, B.C.; Uddin, M.A. Relativistic study on the scattering of electrons and positrons from atomic iron at energies 1 eV–10 keV. Mol. Phys. 2020, 23, e1849838. [Google Scholar] [CrossRef]
- Haque, M.M.; Haque, A.K.; Jakubassa-Amundsen, D.H.; Patoary, M.A.; Basak, A.K.; Maaza, M.; Saha, B.C.; Uddin, M.A. e±-Ar scattering in the energy range 1 eV ≤ Ei ≤ 0.5 GeV. J. Phys. Commun. 2019, 3, 045011. [Google Scholar] [CrossRef]
- Haque, M.M.; Haque, A.K.; Bhattacharjee, P.P.; Uddin, M.A.; Patoary, M.A.; Basak, A.K.; Maaza, M.; Saha, B.C. Relativistic treatment of scattering of electrons and positrons by mercury atoms. Mol. Phys. 2019, 117, 2303–2319. [Google Scholar] [CrossRef]
- Haque, A.K.; Haque, M.M.; Hossain, M.S.; Hossain, M.I.; Patoary, M.A.; Maaza, M.; Basak, A.K.; Saha, B.C.; Uddin, M.A. A study of the critical minima and spin polarization in the elastic electron scattering by the lead atom. J. Phys. Commun. 2018, 2, 125013. [Google Scholar] [CrossRef]
- Hosain, M.E.; Patoary, M.A.; Haque, M.M.; Haque, A.F.; Hossain, M.I.; Uddin, M.A.; Basak, A.K.; Maaza, M.; Saha, B.C. Elastic scattering of e± by Na atoms. Mol. Phys. 2018, 116, 631–648. [Google Scholar] [CrossRef]
- McWilliam, A.; Rauch, M. (Eds.) Origin and Evolution of the Elements (Carnegie Observatories Astrophysics Series Volume 4); Cambridge University Press: Cambridge, UK, 2014. [Google Scholar]
- Itikawa, Y. Cross sections for electron collisions with carbon dioxide. J. Phys. Chem. Ref. Data 2002, 31, 749. [Google Scholar] [CrossRef]
- Jackman, C.H.; Garvey, R.H.; Green, A.E. Electron impact on atmospheric gases, I. Updated cross sections. J. Geophys. Res. 1977, 82, 5081–5090. [Google Scholar] [CrossRef] [Green Version]
- Itikawa, Y.; Shimizu, M. Effective cross sections for collision processes between carbon dioxide and slow electrons, with application to the Martian upper atmosphere. Bull. Inst. Space Aeronaut. Sci. 1971, 7, 64. [Google Scholar]
- Tawara, H. Atomic and Molecular Data for H2O, CO and CO2 Relevant to Edge Plasma Impurities; NIFS Report NIFS-DATA-19; National Institute for Fusion Science: Toki, Japan, 1992. [Google Scholar]
- Shirai, T.; Tabata, T.; Tawara, H. Analytic cross sections for electron collisions with CO, CO2, and H2O relevant to edge plasma impurities. At. Data Nucl. Data Tables 2001, 79, 143–184. [Google Scholar] [CrossRef]
- Karwasz, G.P.; Brusa, R.S.; Zecca, A. One century of experiments on electron-atom and molecule scattering: A critical review of integral cross-sections. Riv. Nuovo C. 2001, 24, 1–118. [Google Scholar] [CrossRef]
- Hudson, J.E.; Vallance, C.; Harl, P.W. Absolute electron impact ionization cross-sections for CO, CO2, OCS and CS2. J. Phys. B At. Mol. Opt. Phys. 2003, 37, 445. [Google Scholar] [CrossRef]
- Vinodkumar, M.; Limbachiya, C.; Bhutadia, H. Electron impact calculations of total ionization cross sections for environmentally sensitive diatomic and triatomic molecules from threshold to 5 keV. J. Phys. B At. Mol. Opt. Phys. 2009, 43, 015203. [Google Scholar] [CrossRef]
- Laricchia, G.; Moxom, J. Ionization of CO2 by positron impact. Phys. Lett. A 1993, 174, 255–257. [Google Scholar] [CrossRef]
- Sueoka, O.; Hamada, A. Total cross-section measurements for 0.3–10 eV positron scattering on N2, CO, and CO2 molecules. J. Phys. Soc. Jpn. 1993, 62, 2669–2674. [Google Scholar] [CrossRef]
- Bluhme, H.; Frandsen, N.P.; Jacobsen, F.M.; Knudsen, H.; Merrison, J.P.; Mitchell, R.; Paludan, K.; Poulsen, M.R. Non-dissociative and dissociative ionization of CO, CO2 and CH4 by positron impact. J. Phys. B At. Mol. Opt. Phys. 1999, 32, 5825. [Google Scholar] [CrossRef]
- Marler, J.P.; Surko, C.M. Positron-impact ionization, positronium formation, and electronic excitation cross sections for diatomic molecules. Phys. Rev. A 2005, 72, 062713. [Google Scholar] [CrossRef] [Green Version]
- Cooke, D.A.; Murtagh, D.J.; Kövér, A.; Laricchia, G. Direct non-dissociative and dissociative ionization of CO2 by positron impact. Nucl. Instrum. Methods Phys. Res. Sect. Beam Interact. Mater. Atoms. 2008, 266, 466–470. [Google Scholar] [CrossRef]
- Baluja, K.L.; Jain, A. Total (elastic and inelastic) scattering cross sections for several positron-molecule systems at 10–5000 eV: H2, H2O, NH3, CH4, N2, CO, C2H2, O2, SiH4, CO2, N2O, and CF4. Phys. Rev. A 1992, 45, 7838. [Google Scholar] [CrossRef]
- Campeanu, R.I.; Chis, V.; Nagy, L.; Stauffer, A.D. Positron impact ionization of CO and CO2. Phys. Lett. A 2005, 344, 247–252. [Google Scholar] [CrossRef]
- Blanco, F.; Garcia, G. Screening corrections for calculation of electron scattering from polyatomic molecules. Phys. Lett. A 2003, 317, 458–462. [Google Scholar] [CrossRef]
- Blanco, F.; Ellis-Gibbings, L.; García, G. Screening corrections for the interference contributions to the electron and positron scattering cross sections from polyatomic molecules. Chem. Phys. Lett. 2016, 645, 71–75. [Google Scholar] [CrossRef]
- Billah, M.M.; Khandker, M.H.; Shorifuddoza, M.; Sayed, M.A.; Watabe, H.; Haque, A.K.; Uddin, M.A. Theoretical investigations of e±–CO scattering. J. Phys. B At. Mol. Opt. Phys. 2021, 54, 095203. [Google Scholar] [CrossRef]
- Dirac, P.A.M. Relativistic Theory of the Electron, International Series of Monographs on Physics, 4th ed.; Oxford University Press: New York, NY, USA, 1981. [Google Scholar]
- Salvat, F.; Fernandez-Varea, J.M.; Williamson, W. Accurate numerical solution of the radial Schrödinger and Dirac wave equations. Comput. Phys. Commun. 1995, 90, 151–168. [Google Scholar] [CrossRef]
- Salvat, F.; Jablonski, A.; Powell, C.J. ELSEPA—Dirac partial-wave calculation of elastic scattering of electrons and positrons by atoms, positive ions and molecules. Comput. Phys. Commun. 2005, 165, 157–190. [Google Scholar] [CrossRef]
- Desclaux, J.P. A multiconfiguration relativistic Dirac-Fock program. Comput. Phys. Commun. 1975, 9, 31–45. [Google Scholar] [CrossRef]
- Hahn, B.; Ravenhall, D.G.; Hofstadter, R. High-energy electron scattering and the charge distributions of selected nuclei. Phys. Rev. 1956, 101, 1131. [Google Scholar] [CrossRef]
- Furness, J.B.; McCarthy, I.E. Semiphenomenological optical model for electron scattering on atoms. Phys. At. B Mol. Phys. 1973, 6, 2280. [Google Scholar] [CrossRef]
- Salvat, F. Optical-model potential for electron and positron elastic scattering by atoms. Phys. Rev. A 2003, 68, 012708. [Google Scholar] [CrossRef] [Green Version]
- Hossain, M.I.; Haque, A.K.; Atiqur, M.; Patoary, R.; Uddin, M.A.; Basak, A.K. Elastic scattering of electrons and positrons by atomic magnesium. Eur. Phys. J. D 2016, 70, 1–9. [Google Scholar]
- Lide, D.R. (Ed.) CRC Handbook of Chemistry and Physics (Volume 85); CRC Press: Boca Raton, FL, USA, 2004. [Google Scholar]
- Available online: https://cccbdb.nist.gov/pollistx.asp (accessed on 21 August 2020).
- Zhan, C.G.; Nichols, J.A.; Dixon, D.A. Ionization potential, electron affinity, electronegativity, hardness, and electron excitation energy: Molecular properties from density functional theory orbital energies. J. Phys. Chem. A 2003, 107, 4184–4195. [Google Scholar] [CrossRef] [Green Version]
- Joshipura, K.N.; Antony, B.K. Total (including ionization) cross sections of electron impact on ground state and metastable Ne atoms. Phys. Lett. A 2001, 289, 323–328. [Google Scholar] [CrossRef]
- Joshipura, K.N.; Limbachiya, C.G. 2002 Theoretical total ionization cross-sections for electron impact on atomic and molecular halogens. Int. J. Mass Spectrom. 2002, 216, 239–247. [Google Scholar] [CrossRef]
- Iga, I.; Homem, M.G.; Mazon, K.T.; Lee, M.T. Elastic and total cross sections for electron-carbon dioxide collisions in the intermediate energy range. J. Phys. At. Mol. Opt. Phys. 1999, 32, 4373. [Google Scholar] [CrossRef]
- Tanaka, H.; Ishikawa, T.; Masai, T.; Sagara, T.; Boesten, L.; Takekawa, M.; Itikawa, Y.; Kimura, M. Elastic collisions of low-to intermediate-energy electrons from carbon dioxide: Experimental and theoretical differential cross sections. Phys. Rev. A 1998, 57, 1798. [Google Scholar] [CrossRef]
- Shyn, T.W.; Sharp, W.E.; Carignan, G.R. Angular distribution of electrons elastically scattered from CO2. Phys. Rev. A 1978, 17, 1855. [Google Scholar] [CrossRef]
- Register, D.F.; Nishimura, H.; Trajmar, S. Elastic scattering and vibrational excitation of CO2 by 4, 10, 20 and 50 eV electrons. J. Phys. B At. Mol. Phys. 1980, 13, 1651. [Google Scholar] [CrossRef]
- Kanik, I.; McCollum, D.C.; Nickel, J.C. Absolute elastic differential scattering cross sections for electron impact on carbon dioxide in the intermediate energy region. J. Phys. B At. Mol. Opt. Phys. 1989, 22, 1225. [Google Scholar] [CrossRef]
- Bromberg, J.P. Absolute differential cross sections of elastically scattered electrons. V. O2 and CO2 at 500, 400, and 300 eV. J. Chem. Phys. 1974, 60, 1717–1721. [Google Scholar] [CrossRef]
- Maji, S.; Basavaraju, G.; Bharathi, S.M.; Bhushan, K.G.; Khare, S.P. Elastic scattering of electrons by polyatomic molecules in the energy range 300–1300 eV: CO, H and. J. Phys. B At. Mol. Opt. Phys. 1998, 31, 4975. [Google Scholar] [CrossRef]
- Iga, I.; Nogueira, J.C.; Mu-Tao, L. Elastic scattering of electrons from CO2 in the intermediate energy range. J. Phys. B At. Mol. Phys. 1984, 17, L185. [Google Scholar] [CrossRef]
- Przybyla, D.A.; Addo-Asah, W.; Kauppila, W.E.; Kwan, C.K.; Stein, T.S. Measurements of differential cross sections for positrons scattered from N2, CO, O2, N2O, and CO2. Phys. Rev. A 1999, 60, 359. [Google Scholar] [CrossRef]
- Dapor, M.; Miotello, A. Differential, total, and transport cross sections for elastic scattering of low energy positrons by neutral atoms (Z = 1–92, E = 500–4000 eV). At. Data Nucl. Data Tables 1998, 69, 1–100. [Google Scholar] [CrossRef]
- Fink, M.; Yates, A.C. Theoretical electron scattering amplitudes and spin polarizations. At. Data Nucl. Data Tables 1969, 1, 385–456. [Google Scholar] [CrossRef]
- Fink, M.; Ingram, J. Theoretical electron scattering amplitudes and spin polarizations: Electron energies 100 to 1500 eV Part II. Be, N, O, Al, Cl, V, Co, Cu, As, Nb, Ag, Sn, Sb, I, and Ta targets. At. Data Nucl. Data Tables 1972, 4, 129–207. [Google Scholar] [CrossRef]
- Kwan, C.K.; Hsieh, Y.F.; Kauppila, W.E.; Smith, S.J.; Stein, T.S.; Uddin, M.N.; Dababneh, M.S. e±-CO and e±-CO2 total cross-section measurements. Phys. Rev. A 1983, 27, 1328. [Google Scholar] [CrossRef]
- Szmytkowski, C.; Zecca, A.; Karwasz, G.; Oss, S.; Maciag, K.; Marinkovic, B.; Brusa, R.S.; Grisenti, R. Absolute total cross sections for electron-CO2 scattering at energies form 0.5 to 3000 eV. J. Phys. B At. Mol. Phys. 1987, 20, 5817. [Google Scholar] [CrossRef]
- Nogueira, J.C.; Iga, I.; Chaguri, J.E. Total cross section measurements of electrons scattered by nitrogen and carbon dioxide in the energy range 500–3000 eV. Rev. Bras. Fis. 1985, 15, 224–234. [Google Scholar]
- Garcia, G.; Manero, F. Total cross sections for electron scattering by CO2 molecules in the energy range 400–5000 eV. Phys. Rev. A 1996, 53, 250. [Google Scholar] [CrossRef] [PubMed]
- Hoffman, K.R.; Dababneh, M.S.; Hsieh, Y.F.; Kauppila, W.E.; Pol, V.; Smart, J.H.; Stein, T.S. Total-cross-section measurements for positrons and electrons colliding with H2, N2, and CO2. Phys. Rev. A 1982, 25, 1393. [Google Scholar] [CrossRef]
- Shilin, X.; Fang, Z.; Liqiang, Y.; Changqing, Y.; Kezun, X. Absolute total cross section measurement for electron scattering on in the energy range 600–4250 eV. J. Phys. B At. Mol. Opt. Phys. 1997, 30, 2867. [Google Scholar] [CrossRef]
- Jain, A.; Baluja, K.L. Total (elastic plus inelastic) cross sections for electron scattering from diatomic and polyatomic molecules at 10–5000 eV: H2, Li2, HF, CH4, N2, CO, C2H2, HCN, O2, HCl, H2S, PH3, SiH4, and CO2. Phys. Rev. A 1992, 45, 202. [Google Scholar] [CrossRef]
- Hwang, W.; Kim, Y.K.; Rudd, M.E. New model for electron-impact ionization cross sections of molecules. J. Chem. Phys. 1996, 104, 2956–2966. [Google Scholar] [CrossRef] [Green Version]
- Asundi, R.K.; Craggs, J.D.; Kurepa, M.V. Electron attachment and ionization in oxygen, carbon monoxide and carbon dioxide. Proc. Phys. Soc. (1958–1967) 1963, 82, 967. [Google Scholar] [CrossRef]
- Craggs, J.D.; Tozer, B.A. The attachment of slow electrons in carbon dioxide. Proc. R. Soc. Lond. Ser. A Math. Phys. Sci. 1960, 254, 229–241. [Google Scholar]
- Rapp, D.; Englander-Golden, P. Total cross sections for ionization and attachment in gases by electron impact. I. Positive ionization. J. Chem. Phys. 1965, 43, 1464–1479. [Google Scholar] [CrossRef]
- Orient, O.J.; Strivastava, S.K. Electron impact ionisation of H2O, CO, CO2 and CH4. J. Phys. B At. Mol. Phys. 1987, 20, 3923. [Google Scholar] [CrossRef]
- Freund, R.S.; Wetzel, R.C.; Shul, R.J. Measurements of electron-impact-ionization cross sections of N2, CO, CO2, CS, S2, CS2, and metastable N2. Phys. Rev. A 1990, 41, 5861. [Google Scholar] [CrossRef] [PubMed]
- Straub, H.C.; Lindsay, B.G.; Smith, K.A.; Stebbings, R.F. Absolute partial cross sections for electron-impact ionization of CO2 from threshold to 1000 eV. J. Chem. Phys. 1996, 105, 4015–4022. [Google Scholar] [CrossRef]
- Mayol, R.; Salvat, F. Total and transport cross sections for elastic scattering of electrons by atoms. At. Data Nucl. Data Tables 1997, 65, 55–154. [Google Scholar] [CrossRef]
- Kimura, M.; Sueoka, O.; Hamada, A.; Takekawa, M.; Itikawa, Y.; Tanaka, H.; Boesten, L. Remarks on total and elastic cross sections for electron and positron scattering from CO2. J. Chem. Phys. 1997, 107, 6616–6620. [Google Scholar] [CrossRef]
- Nakamura, Y. Drift Velocity and Longitudinal Diffusion Coefficient of Electrons in CO2? Ar Mixtures and Electron Collision Cross Sections for CO2 Molecules. Aust. J. Phys. 1995, 48, 357–364. [Google Scholar] [CrossRef] [Green Version]
- Charlton, M.; Griffith, T.C.; Heyl, G.R.; Wright, G.L. Total scattering cross sections for low-energy positrons in the molecular gases H2, N2, CO2, O2 and CH4. J. Phys. B At. Mol. Phys. 1983, 16, 323. [Google Scholar] [CrossRef]
- Charlton, M.; Griffith, T.C.; Heyl, G.R.; Wright, G.L. Total scattering cross sections for intermediate-energy positrons in the molecular gases H2, O2, N2, CO2 and CH4. J. Phys. B At. Mol. Phys. 1980, 13, L353. [Google Scholar] [CrossRef]
- Zecca, A.; Perazzolli, C.; Moser, N.; Sanyal, D.; Chakrabarti, M.; Brunger, M.J. Positron scattering from carbon dioxide. Phys. Rev. A 2006, 74, 012707. [Google Scholar] [CrossRef] [Green Version]
- Singh, S.; Antony, B. Study of inelastic channels by positron impact on simple molecules. J. Appl. Phys. 2017, 121, 244903. [Google Scholar] [CrossRef]
Energy (eV) | IECS (a) | MTCS (a) | VCS (a) | INCS (a) | TCS (a) | Energy (eV) | IECS (a) | MTCS (a) | VCS (a) | INCS (a) | TCS (a) |
---|---|---|---|---|---|---|---|---|---|---|---|
1.0 | 42.0854 | 23.98482 | 41.07042 | 1.638150 | 43.72359 | 500 | 9.08970 | 1.26628 | 2.24338 | 6.10128 | 15.19098 |
1.5 | 56.1819 | 31.55945 | 53.25334 | 1.362240 | 57.54414 | 550 | 8.50429 | 1.10932 | 2.00673 | 5.66504 | 14.16933 |
2.0 | 64.8906 | 36.91512 | 60.25945 | 1.171040 | 66.06168 | 600 | 7.99641 | 0.98165 | 1.80794 | 5.28682 | 13.28323 |
2.5 | 70.4222 | 40.94651 | 64.35240 | 1.033250 | 71.45554 | 650 | 7.55041 | 0.87605 | 1.63892 | 4.95605 | 12.50646 |
3.0 | 74.6747 | 44.46517 | 67.35923 | 0.940170 | 75.61496 | 700 | 7.15491 | 0.78753 | 1.49379 | 4.66444 | 11.81935 |
3.5 | 77.3191 | 47.07412 | 68.85656 | 0.864100 | 78.18324 | 750 | 6.80126 | 0.71246 | 1.36808 | 4.40550 | 11.20676 |
4.0 | 78.8274 | 48.96623 | 69.28283 | 0.800820 | 79.62824 | 800 | 6.48279 | 0.64815 | 1.25836 | 4.17406 | 10.65685 |
4.5 | 79.5257 | 50.28929 | 68.94716 | 0.748320 | 80.27407 | 850 | 6.19423 | 0.59258 | 1.16195 | 3.96597 | 10.16021 |
5.0 | 79.6438 | 51.15950 | 68.07291 | 0.703410 | 80.34728 | 900 | 5.93137 | 0.54418 | 1.07672 | 3.77789 | 9.70926 |
6.0 | 78.7427 | 51.88624 | 65.31629 | 0.630560 | 79.37326 | 950 | 5.69081 | 0.50173 | 1.00096 | 3.60704 | 9.29784 |
7.0 | 76.9509 | 51.67313 | 61.86663 | 0.574800 | 77.52578 | 1000 | 5.46970 | 0.46427 | 0.93328 | 3.45116 | 8.92086 |
8.0 | 75.0720 | 51.09960 | 58.51929 | 0.533000 | 75.60503 | 1500 | 3.95256 | 0.24702 | 0.52331 | 2.41427 | 6.36683 |
9.0 | 73.8490 | 50.73996 | 55.95032 | 0.503300 | 74.35231 | 2000 | 3.10288 | 0.15521 | 0.33902 | 1.86027 | 4.96315 |
10 | 72.6002 | 50.21334 | 53.53634 | 0.479610 | 73.07981 | 2500 | 2.55727 | 0.10736 | 0.23939 | 1.51489 | 4.07215 |
11 | 71.3549 | 49.58229 | 51.29557 | 0.459590 | 71.81454 | 3000 | 2.17672 | 0.07909 | 0.17906 | 1.27863 | 3.45536 |
12 | 70.1252 | 48.88473 | 49.22426 | 0.443350 | 70.56856 | 3500 | 1.89591 | 0.06092 | 0.13955 | 1.10677 | 3.00268 |
13 | 68.9171 | 48.14579 | 47.30963 | 0.429340 | 69.34652 | 4000 | 1.68007 | 0.04851 | 0.11217 | 0.97607 | 2.65614 |
14 | 67.7322 | 47.38034 | 45.53585 | 0.417790 | 68.15000 | 4500 | 1.50898 | 0.03963 | 0.09236 | 0.87329 | 2.38227 |
15 | 66.5713 | 46.59925 | 43.88764 | 0.407600 | 66.97898 | 5000 | 1.36997 | 0.03305 | 0.07753 | 0.79035 | 2.16032 |
16 | 65.4344 | 45.80875 | 42.35064 | 0.399210 | 65.83361 | 5500 | 1.25478 | 0.02802 | 0.06611 | 0.72200 | 1.97678 |
17 | 64.3217 | 45.01423 | 40.91303 | 0.391780 | 64.71351 | 6000 | 1.15775 | 0.02409 | 0.05712 | 0.66470 | 1.82245 |
18 | 63.2330 | 44.21868 | 39.56436 | 0.385840 | 63.61887 | 6500 | 1.07489 | 0.02096 | 0.04991 | 0.61598 | 1.69087 |
19 | 62.1688 | 43.42543 | 38.29632 | 0.380690 | 62.54957 | 7000 | 1.00331 | 0.01841 | 0.04402 | 0.57404 | 1.57735 |
20 | 61.1293 | 42.63653 | 37.10176 | 0.376440 | 61.50576 | 7500 | 0.94084 | 0.01632 | 0.03915 | 0.53756 | 1.47840 |
22 | 59.1249 | 41.07920 | 34.91004 | 0.370410 | 59.49532 | 8000 | 0.88585 | 0.01457 | 0.03508 | 0.50553 | 1.39138 |
24 | 57.1988 | 39.51914 | 32.90082 | 0.633270 | 57.83212 | 8500 | 0.83707 | 0.01310 | 0.03163 | 0.47719 | 1.31426 |
25 | 56.2152 | 38.65356 | 31.88650 | 1.068660 | 57.28394 | 9000 | 0.79351 | 0.01184 | 0.02868 | 0.45193 | 1.24544 |
26 | 55.1807 | 37.66610 | 30.83114 | 1.783060 | 56.96381 | 9500 | 0.75436 | 0.01077 | 0.02614 | 0.42928 | 1.18364 |
28 | 53.1045 | 35.59678 | 28.77283 | 3.450760 | 56.55532 | 10,000 | 0.71899 | 0.00984 | 0.02393 | 0.40885 | 1.12784 |
30 | 51.1376 | 33.62184 | 26.90229 | 5.019120 | 56.15674 | 15,000 | 0.48923 | 0.00479 | 0.01186 | 0.27850 | 0.76773 |
32 | 49.3114 | 31.80384 | 25.23542 | 6.387610 | 55.69908 | 20,000 | 0.37474 | 0.00287 | 0.00718 | 0.21268 | 0.58742 |
35 | 46.8329 | 29.37655 | 23.08099 | 8.073230 | 54.90616 | 25,000 | 0.30529 | 0.00193 | 0.00486 | 0.17297 | 0.47826 |
40 | 43.3393 | 26.06374 | 20.25115 | 10.03933 | 53.37863 | 30,000 | 0.25867 | 0.00139 | 0.00353 | 0.14640 | 0.40508 |
45 | 40.4751 | 23.42668 | 18.12230 | 11.31222 | 51.78741 | 40,000 | 0.20005 | 0.00214 | 0.11310 | 0.31315 | |
50 | 38.0845 | 21.26576 | 16.48502 | 12.15395 | 50.23855 | 50,000 | 0.16471 | 0.00145 | 0.09306 | 0.25777 | |
55 | 35.9628 | 19.46319 | 15.21109 | 12.72534 | 48.68822 | 60,000 | 0.14108 | 0.00106 | 0.07968 | 0.22076 | |
60 | 34.1392 | 17.90347 | 14.18016 | 13.11308 | 47.25237 | 70,000 | 0.12418 | 0.07013 | 0.19430 | ||
65 | 32.5491 | 16.53843 | 13.32758 | 13.37236 | 45.92153 | 80,000 | 0.11149 | 0.06296 | 0.17445 | ||
70 | 31.1420 | 15.33249 | 12.60837 | 13.53775 | 44.67976 | 90,000 | 0.10162 | 0.05738 | 0.15901 | ||
75 | 29.8818 | 14.25735 | 11.98851 | 13.63682 | 43.51870 | 100,000 | 0.09373 | 0.05293 | 0.14666 | ||
80 | 28.7444 | 13.29421 | 11.44535 | 13.68409 | 42.42852 | 150,000 | 0.07011 | 0.03960 | 0.10971 | ||
85 | 27.7103 | 12.42691 | 10.96134 | 13.69332 | 41.40366 | 200,000 | 0.05839 | 0.03299 | 0.09138 | ||
90 | 26.7664 | 11.64579 | 10.52648 | 13.66786 | 40.43429 | 250,000 | 0.05143 | 0.02906 | 0.08049 | ||
95 | 25.9004 | 10.93954 | 10.13083 | 13.61692 | 39.51739 | 300,000 | 0.04684 | 0.02648 | 0.07332 | ||
100 | 25.1031 | 10.29893 | 9.767290 | 13.54679 | 38.64990 | 400,000 | 0.04122 | 0.02331 | 0.06453 | ||
150 | 19.5995 | 6.25218 | 7.21430 | 12.31879 | 31.91836 | 500,000 | 0.03795 | 0.02146 | 0.05941 | ||
200 | 16.4716 | 4.33727 | 5.70653 | 10.90102 | 27.37261 | 600,000 | 0.03583 | 0.02028 | 0.05611 | ||
250 | 14.3514 | 3.23499 | 4.66128 | 9.70991 | 24.06132 | 700,000 | 0.03437 | 0.01945 | 0.05382 | ||
300 | 12.7780 | 2.52920 | 3.89092 | 8.73757 | 21.51563 | 800,000 | 0.03331 | 0.01884 | 0.05214 | ||
350 | 11.5650 | 2.05474 | 3.31937 | 7.90969 | 19.47475 | 900,000 | 0.03251 | 0.01842 | 0.05093 | ||
400 | 10.5895 | 1.71708 | 2.88076 | 7.20521 | 17.79471 | 1,000,000 | 0.03189 | 0.01808 | 0.04997 | ||
450 | 9.77496 | 1.46330 | 2.52934 | 6.60900 | 16.38396 | - | - | - | - | - | - |
Energy (eV) | IECS (a) | MTCS (a) | VCS (a) | INCS (a) | TCS (a) | Energy (eV) | IECS (a) | MTCS (a) | VCS (a) | INCS (a) | TCS (a) |
---|---|---|---|---|---|---|---|---|---|---|---|
1.0 | 21.31376 | 9.04547 | 16.16806 | — | 21.31376 | 500 | 6.13463 | 0.62842 | 1.32568 | 7.988410 | 14.12304 |
1.5 | 14.64154 | 4.41747 | 9.09951 | — | 14.64154 | 550 | 5.86076 | 0.56935 | 1.21088 | 7.360950 | 13.22171 |
2.0 | 11.77617 | 3.41346 | 6.18675 | — | 11.77617 | 600 | 5.61262 | 0.51897 | 1.11161 | 6.825040 | 12.43766 |
2.5 | 10.39729 | 3.58501 | 4.94863 | — | 10.39729 | 650 | 5.38628 | 0.47554 | 1.02498 | 6.362100 | 11.74838 |
3.0 | 9.683410 | 4.12826 | 4.47923 | — | 9.683410 | 700 | 5.17866 | 0.43773 | 0.94881 | 5.958260 | 11.13692 |
3.5 | 9.294760 | 4.74907 | 4.38943 | — | 9.294760 | 750 | 4.98736 | 0.40458 | 0.88137 | 5.602900 | 10.59026 |
4.0 | 9.075470 | 5.33761 | 4.49373 | — | 9.075470 | 800 | 4.81038 | 0.37530 | 0.82132 | 5.28781 | 10.09819 |
4.5 | 8.947990 | 5.85614 | 4.69675 | 0.022530 | 8.970520 | 850 | 4.64608 | 0.34928 | 0.76759 | 5.00652 | 9.65260 |
5.0 | 8.791060 | 6.21986 | 4.90586 | 2.493160 | 11.28422 | 900 | 4.49309 | 0.32604 | 0.71928 | 4.75386 | 9.24696 |
6.0 | 8.706730 | 6.60407 | 5.38391 | 10.02620 | 18.73293 | 950 | 4.35028 | 0.30520 | 0.67567 | 4.52567 | 8.87595 |
7.0 | 8.995430 | 6.81869 | 5.90467 | 15.58556 | 24.58100 | 1000 | 4.21664 | 0.28641 | 0.63616 | 4.31851 | 8.53515 |
8.0 | 9.335050 | 6.76016 | 6.26459 | 22.48894 | 31.82399 | 1500 | 3.23440 | 0.16869 | 0.38346 | 2.96623 | 6.20063 |
9.0 | 9.722720 | 6.55397 | 6.49990 | 28.99780 | 38.72052 | 2000 | 2.63111 | 0.11290 | 0.26023 | 2.26187 | 4.89298 |
10 | 10.15614 | 6.33429 | 6.66653 | 34.09654 | 44.25268 | 2500 | 2.22138 | 0.08161 | 0.18997 | 1.82930 | 4.05068 |
11 | 10.57529 | 6.14749 | 6.78050 | 37.68302 | 48.25831 | 3000 | 1.92427 | 0.06213 | 0.14571 | 1.53650 | 3.46077 |
12 | 10.95133 | 5.99034 | 6.84942 | 40.18165 | 51.13298 | 3500 | 1.69864 | 0.04909 | 0.11583 | 1.32509 | 3.02373 |
13 | 11.27257 | 5.85506 | 6.88140 | 41.90944 | 53.18201 | 4000 | 1.52132 | 0.03989 | 0.09461 | 1.16524 | 2.68656 |
14 | 11.53878 | 5.73539 | 6.88474 | 43.09077 | 54.62955 | 4500 | 1.37819 | 0.03313 | 0.07894 | 1.04014 | 2.41833 |
15 | 11.75516 | 5.62711 | 6.86672 | 43.87846 | 55.63362 | 5000 | 1.26018 | 0.02801 | 0.06700 | 0.93956 | 2.19974 |
16 | 11.92770 | 5.52692 | 6.83287 | 44.38120 | 56.30889 | 5500 | 1.16118 | 0.02403 | 0.05768 | 0.85694 | 2.01812 |
17 | 12.06341 | 5.43239 | 6.78744 | 44.67995 | 56.74336 | 6000 | 1.07691 | 0.02086 | 0.05025 | 0.78785 | 1.86477 |
18 | 12.16665 | 5.34237 | 6.73368 | 44.82097 | 56.98762 | 6500 | 1.00431 | 0.01830 | 0.04422 | 0.72923 | 1.73354 |
19 | 12.24139 | 5.25615 | 6.67412 | 44.83814 | 57.07953 | 7000 | 0.94109 | 0.01620 | 0.03925 | 0.67887 | 1.61996 |
20 | 12.29155 | 5.17318 | 6.61067 | 44.75847 | 57.05002 | 7500 | 0.88555 | 0.01446 | 0.03510 | 0.63513 | 1.52068 |
22 | 12.34065 | 5.01289 | 6.47673 | 44.43228 | 56.77294 | 8000 | 0.83635 | 0.01299 | 0.03161 | 0.59679 | 1.43314 |
24 | 12.32951 | 4.86104 | 6.33969 | 43.92987 | 56.25939 | 8500 | 0.79248 | 0.01173 | 0.02863 | 0.56291 | 1.35538 |
25 | 12.30806 | 4.78775 | 6.27134 | 43.63920 | 55.94726 | 9000 | 0.75310 | 0.01066 | 0.02606 | 0.53275 | 1.28584 |
26 | 12.27922 | 4.71585 | 6.20348 | 43.33667 | 55.61589 | 9500 | 0.71755 | 0.00973 | 0.02384 | 0.50573 | 1.22328 |
28 | 12.19977 | 4.57739 | 6.07058 | 42.68939 | 54.88916 | 10,000 | 0.68531 | 0.00893 | 0.02190 | 0.48139 | 1.16670 |
30 | 12.10260 | 4.44497 | 5.94177 | 42.02174 | 54.12434 | 15,000 | 0.47788 | 0.00446 | 0.01110 | 0.32664 | 0.80452 |
32 | 11.98864 | 4.31973 | 5.81869 | 41.33653 | 53.32517 | 20,000 | 0.36790 | 0.00271 | 0.00680 | 0.24891 | 0.61680 |
35 | 11.80039 | 4.14345 | 5.64396 | 40.30803 | 52.10842 | 25,000 | 0.30065 | 0.00183 | 0.00464 | 0.20214 | 0.50279 |
40 | 11.47062 | 3.87874 | 5.37857 | 38.65748 | 50.12810 | 30,000 | 0.25528 | 0.00133 | 0.00338 | 0.17093 | 0.42621 |
45 | 11.13984 | 3.64701 | 5.14290 | 37.10724 | 48.24707 | 40,000 | 0.19796 | 0.00206 | 0.13186 | 0.32982 | |
50 | 10.82024 | 3.44391 | 4.93337 | 35.66469 | 46.48493 | 50,000 | 0.16325 | 0.00140 | 0.10841 | 0.27166 | |
55 | 10.59385 | 3.16367 | 4.69440 | 34.21506 | 44.80891 | 60,000 | 0.13998 | 0.00102 | 0.09277 | 0.23276 | |
60 | 10.55688 | 2.97217 | 4.55067 | 32.89154 | 43.44841 | 70,000 | 0.12331 | 0.08161 | 0.20492 | ||
65 | 10.55709 | 2.82815 | 4.44206 | 31.67675 | 42.23384 | 80,000 | 0.11078 | 0.07324 | 0.18402 | ||
70 | 10.56426 | 2.71101 | 4.34963 | 30.55911 | 41.12338 | 90,000 | 0.10103 | 0.06673 | 0.16776 | ||
75 | 10.56748 | 2.61247 | 4.26708 | 29.52444 | 40.09192 | 100,000 | 0.09322 | 0.06153 | 0.15475 | ||
80 | 10.56155 | 2.52664 | 4.18951 | 28.56732 | 39.12887 | 150,000 | 0.06981 | 0.04600 | 0.11581 | ||
85 | 10.54226 | 2.45203 | 4.11741 | 27.66548 | 38.20774 | 200,000 | 0.05818 | 0.03830 | 0.09648 | ||
90 | 10.51084 | 2.38396 | 4.04624 | 26.82760 | 37.33844 | 250,000 | 0.05127 | 0.03373 | 0.08500 | ||
95 | 10.46829 | 2.32201 | 3.97679 | 26.04335 | 36.51163 | 300,000 | 0.04671 | 0.03073 | 0.07744 | ||
100 | 10.41215 | 2.26253 | 3.90614 | 25.30739 | 35.71954 | 400,000 | 0.04112 | 0.02704 | 0.06816 | ||
150 | 9.58138 | 1.76368 | 3.23099 | 19.81904 | 29.40042 | 500,000 | 0.03787 | 0.02488 | 0.06275 | ||
200 | 8.80091 | 1.42913 | 2.72322 | 16.33623 | 25.13714 | 600,000 | 0.03577 | 0.02351 | 0.05928 | ||
250 | 8.16199 | 1.19573 | 2.34308 | 13.90700 | 22.06899 | 700,000 | 0.03431 | 0.02254 | 0.05685 | ||
300 | 7.62864 | 1.02244 | 2.04751 | 12.11221 | 19.74085 | 800,000 | 0.03326 | 0.02182 | 0.05508 | ||
350 | 7.17515 | 0.88922 | 1.81158 | 10.72907 | 17.90422 | 900,000 | 0.03246 | 0.02136 | 0.05382 | ||
400 | 6.78321 | 0.78391 | 1.61935 | 9.628990 | 16.41220 | 1,000,000 | 0.03184 | 0.02096 | 0.05280 | ||
450 | 6.43951 | 0.69868 | 1.45990 | 8.732760 | 15.17227 | - | - | - | - | - | - |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Billah, M.M.; Khatun, M.M.; Haque, M.M.; Ali, M.Y.; Khandker, M.H.; Haque, A.K.F.; Watabe, H.; Uddin, M.A. A Theoretical Study of Scattering of Electrons and Positrons by CO2 Molecule. Atoms 2022, 10, 31. https://doi.org/10.3390/atoms10010031
Billah MM, Khatun MM, Haque MM, Ali MY, Khandker MH, Haque AKF, Watabe H, Uddin MA. A Theoretical Study of Scattering of Electrons and Positrons by CO2 Molecule. Atoms. 2022; 10(1):31. https://doi.org/10.3390/atoms10010031
Chicago/Turabian StyleBillah, M. Masum, M. Mousumi Khatun, M. M. Haque, M. Yousuf Ali, Mahmudul H. Khandker, A. K. F. Haque, Hiroshi Watabe, and M. Alfaz Uddin. 2022. "A Theoretical Study of Scattering of Electrons and Positrons by CO2 Molecule" Atoms 10, no. 1: 31. https://doi.org/10.3390/atoms10010031
APA StyleBillah, M. M., Khatun, M. M., Haque, M. M., Ali, M. Y., Khandker, M. H., Haque, A. K. F., Watabe, H., & Uddin, M. A. (2022). A Theoretical Study of Scattering of Electrons and Positrons by CO2 Molecule. Atoms, 10(1), 31. https://doi.org/10.3390/atoms10010031