COMPARISONS OF QUANTEMOL AND MORGAN LXCAT CROSS SECTION SETS FOR ELECTRON-NEUTRAL SCATTERING AND RATE-COEFFICIENTS: HELIUM AND WATER

Željko Mladenović, Saša Gocić, Zoran Lj. Petrović

DOI Number
https://doi.org/10.2298/FUPCT1902145M
First page
145
Last page
159

Abstract


The present work compares cross section sets for electron scattering from ground state helium and ground state water molecule, which are available at LXCat Morgan database and the new Quantemol-DB. These cross section sets are  used as an input for numerical solving of Boltzmann equation by using electron Boltzmann solver BOLSIG+, in order to obtain transport coefficients, electron energy distribution function and rate coefficients for electron impact scattering processes. The calculated quantities are compared to examine the quality and completeness of the cross section sets provided by Quantemol database for modeling low-temperature plasmas and interpretation of experimental results.

This article has been corrected. Link to the correction:

https://doi.org/10.2298/FUPCT2001075E


Keywords

cross section, electron energy distribution function, rate coefficient

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References


Adamovich, I., Baalrud, S., Bogaerts, A., Bruggeman, P. J., Cappelli, M., Colombo, V., Czarnetzki, U., Ebert, U., Eden, J. G., Favia, P., Graves, D. B., Hamaguchi, S., Hieftje, G., Hori, M., Kaganovich, I. D., Kortshagen, U., Kushner, M. J., Mason, N. J., Mazouffre, S., Mededovic Thagard, S., Metelmann, H. R., Mizuno, A., Moreau, E., Murphy, A. B., Niemira, B. A., Oehrlein, G. S., Petrovic, Z. Lj., Pitchford, L. C., Pu, Y. K., Rauf, S., Sakai, O., Samukawa, S., Starikovskaia, S., Tennyson, J., Terashima, K., Turner, M. M., van de Sanden, M. C. M., Vardelle, A., 2017. J. Phys. D 50, 323001 (46pp), doi:10.1088/1361-6463/aa76f5

Alves, L. L., Bartschat, K., Biagi, S. F., Bordage, M. C., Pitchford, L. C., Ferreira, C. M., Hagelaar, G. J. M., Morgan, W. L., Pancheshnyi, S., Phelps, A. V., Puech, V., Zatsarinny, O., 2013. J. Phys. D: Appl. Phys. 46, 334002 (22pp). doi:10.1088/0022-3727/46/33/334002

Alves, L. L., Bogaerts, A., Guerra, V., Turner, M. M., 2018. Plasma Sources Sci. Technol. 27, 023002 (26pp). doi:10.1088/1361-6595/aaa86d

Bhoj, A. N., Kushner, M. J., 2006. Multi-scale simulation of functionalization of rough polymer surfaces using atmospheric pressure plasmas, J. Phys. D 39, 1594-1598. doi:10.1088/0022-3727/39/8/018

Bruggeman, P. J., Iza, F., Brandenburg, R., 2017. Plasma Sources Sci. Technol. 26, 123002 (17pp). doi:10.1088/1361-6595/aa97af

Bruggeman, P. J., Kushner, M. J., Locke, B. R., Gardeniers, J. G. E., Graham, W. G., Graves, D. B., Hofman-Caris, R. C. H. M., Maric, D., Reid, J. P., Ceriani, E., Fernandez Rivas, D., Foster, J. E., Garrick, S. C., Gorbanev, Y., Hamaguchi, S., Iza, F., Jablonowski, H., Klimova, E., Kolb, J., Krcma, F., Lukes, P., Machala, Z., Marinov, I., Mariotti, D., Mededovic Thagard, S., Minakata, D., Neyts, E. C., Pawlat, J., Petrovic, Z. Lj., Pflieger, R., Reuter, S., Schram, D. C., Schro ̈ter, S., Shiraiwa, M., Tarabova, B., Tsai, P. A., Verlet, J. R. R., von Woedtke, T., Wilson, K. R., Yasui, K., Zvereva, G., 2016. Plasma Sources Sci. Technol. 25, 053002 (59pp). doi:10.1088/0963-0252/25/5/053002

Bruggeman, P., Schram, D. C., 2010. Plasma Sources Sci. Technol. 19, 045025 (9pp). doi:10.1088/0963-0252/19/4/045025

Colonna, G., Capitelli, M., 2001. J. Phys. D 34, 1812-1818. doi:10.1088/0022-3727/34/12/308

Crompton, R. W., Elford, M. T., Jory, R. L., 1967. Aust. J. Phys. 20, 369-400. doi:10.1071/PH670369

de Urguijo, J., Basurto, E., Juarez, A. M., Ness, K. F., Robson, R. E., Brunger, M. J., White, R. D., 2014. J. Chem. Phys. 141, 014308 (10pp). doi:10.1063/1.4885357

Dorai, R., Kushner, M. J., 2003. J. Phys. D 36, 666-685. doi:10.1088/0022-3727/36/6/309

Faure, A., Gorfinkiel, J. D., Tennyson, J., Mon. Not. R. Astron. Soc. 347, 323-333. doi:10.1111/j.1365-2966.2004.07209.x

Graves, D. B., 2012. J. Phys. D: Appl. Phys. 45, 263001 (42pp). doi:10.1088/0022-3727/45/26/263001

Guerra, V., Sa, P. A., Loureiro, J., 2004. Eur. Phys. J. Appl. Phys. 28, 125-152. doi:10.1051/epjap:2004188

Hagelaar, G. J. M., Pitchford, L. C., 2005. Plasma Sources Sci. Technol. 14, 722-733. doi:10.1088/0963-0252/14/4/011

Hurlbatt, A., Gibson, A. R., Schro ̈ter, S., Bredin, J., Foote, A. P. S., Grondein, P., O’Connell, D., Gans, T., 2017. Plasma Process Polym 14, 1600138 (21pp). doi:10.1002/ppap.201600138

Itikawa, Y., Mason, N., 2005. J. Phys. Chem. Ref. Data 34, 1. doi:10.1063/1.1799251

Kawaguchi, S., Takahashi, K., Satoh, K., Itoh, H., 2016. Jpn. J. Appl. Phys. 55, 07LD03. doi:10.7567/JJAP.55.07LD03

Kong, M. G., Kroesen, G., Morfill, G., Nosenko, T., Shimizu, T., Van Dijk, J., Zimmermann, J. L., 2009. New J. Phys. 11, 115012 (35pp). doi:10.1088/1367-2630/11/11/115012

Kushner, M. J., 2009. J. Phys. D: Appl. Phys. 42, 194013 (20pp). doi:10.1088/0022-3727/42/19/194013

Lazović, S., Puač, N., Miletić, M., Pavlica, D., Jovanović, M., Bugarski, D., Mojsilović, S., Maletić, D., Malović, G., Milenković P., Petrović, Z., 2010. New J. Phys. 12, 083037 (21pp). doi:10.1088/1367-2630/12/8/083037

Lieberman, M. A., Lichtenberg, A. J., 2005. Principles of Plasma Discharges and Materials Processing, 2ed. John Wiley & Sons, New Jersey.

Liu, D. X., Bruggeman, P., Iza, F., Rong, M. Z., Kong, M. G., 2010. Plasma Sources Sci. Technol. 19, 025018 (22pp). doi:10.1088/0963-0252/19/2/025018

Makabe, T., Petrović, Z., 2006. Plasma electronics: Applications in Microelectronic Device Fabrication, Tayler & Francis Group, New York and London.

Metelmann, H. R., Nedrelow, D. S., Seebauer, C., Schuster, M., von Woedtke, T., Weltmann, K. D., Kindler, S., Metelmann, P. H., Finkelstein, S. E., VonHoff, D. D., Podmelle, F., 2015. Clin. Plasma Med. 3, 17-23. doi:10.1016/j.cpme.2015.02.001

Milloy, H. B., Crompton, R. W., 1977. Phys. Rev. A 15, 1847-1850. doi:10.1103/PhysRevA.15.1847

Mladenović, Ž., Gocić, S., Marić, D., Petrović, Z. Lj., 2018. Eur. Phys. J. Plus 133, 344 (15pp). doi:10.1140/epjp/i2018-12187-6

Morgan database, www.lxcat.net, retrieved on April 24th, 2019.

Morgan, W. L., Penetrante, B. M., 1990. Comput. Phys. Commun. 58, 127-152. doi:10.1016/0010-4655(90)90141-M

Murakami, T., Niemi, K., Gans, T., O’Connell, D., Graham, W. G., 2013. Plasma Sources Sci. Technol. 22, 015003 (29pp). doi:10.1088/0963-0252/22/1/015003

Nesbet, R. K., 1979. Phys. Rev. A 20, 58-70. doi:10.1103/PhysRevA.20.58

O’Malley, T. F., Burke, P. G., Berrington, K. A., 1979. J. Phys. B 12, 953-965. doi:10.1088/0022-3700/12/6/014

Pancheshnyi, S., Biagi, S., Bordage, M. C., Hagelaar, G. J. M., Morgan, W. L., Phelps, A. V., Pitchford, L. C., 2012. Chem. Phys. 398, 148-153. doi:10.1016/j.chemphys.2011.04.020

Petrović, Z. Lj., Dujko, S., Marić, D., Malović, G., Nikitović, Ž., Šašić, O., Jovanović, J., Stojanović, V., Radenović, M. R., 2009. J. Phys. D 42, 194002 (33pp). doi:10.1088/0022-3727/42/19/194002

Puač, N., Petrović, Z. Lj., Malović, G., Đordević, A., Živković, S., Giba, Z., Grubišić, D., 2006. J. Phys. D 39, 3514-3519. doi:10.1088/0022-3727/39/16/S09

Schroter, S., Wijaikhum, A., Gibson, A. R., West, A., Davies, H. L., Minesi, N., Dedrick, J., Wagenaars, E., de Oliveira, N., Nahon, L., Kushner, M. J., Booth, J., Niemi, K., Gans, T., O’Connell, D., 2018. Phys. Chem. Chem. Phys. 20, 24263-24286. doi:10.1039/C8CP02473A

Taccogna, F., Dilecce, G., 2016. Eur. Phys. J. D 70: 251-288. doi:10.1140/epjd/e2016-70474-0

Tennyson, J., Rahimi, S., Hill, C., Tse, L., Vibhakar, A., Akello-Egwel, D., Brown, D. B., Dzarasova, A., Hamilton, J. R., Jaksch, D., Mohr, S., Wren-Little, K., Bruckmeier, J., Agarwal, A., Bartschat, K., Bogaerts, A., Booth, J. P., Goeckner, M. J., Hassouni, K., Itikawa, Y., Braams, B. J., Krishnakumar, E., Laricchiuta, A., Mason, N. J., Pandey, S., Petrović, Z. Lj., Pu, Y. K., Ranjan, A., Rauf, S., Schulze, J., Turner, M. M., Ventzek, P., Whitehead, J. C., Yoon, J. S., 2017. Plasma Sources Sci. Technol. 26, 055014 (15pp). doi:10.1088/1361-6595/aa6669

Turner, M. M., 2015. Plasma Sources Sci. Technol. 24, 035027 (32pp). doi:10.1088/0963-0252/24/3/035027

Turner, M. M., 2016. Plasma Sources Sci. Technol. 25, 015003 (12pp). doi:10.1088/0963-0252/25/1/015003

Weltmann, K.-D., von Woedtke, T., 2017. Plasma Phys. Control. Fusion 59, 014031 (11pp), doi:10.1088/0741-3335/59/1/014031

White, R. D., Brunger, M. J., Garland, N. A., Robson, R. E., Ness, K. F., Garcia, G., de Urguijo, J., Dujko, S., Petrović, Z. Lj., 2014. Eur. Phys. J. D 68: 125. doi:10.1140/epjd/e2014-50085-7

White, R. D., Cocks, D., Boyle, G., Casey, M., Garland, N., Konovalov, D., Philippa, B., Stokes, P., de Urguijo, J., Gonzalez-Magana, O., McEachran, R. P., Buckman, S. J., Brunger, M. J., Garcia, G., Dujko, S., Petrovic, Z. Lj., 2018. Plasma Sources. Sci. Technol. 27, 053001 (15pp). doi:10.1088/1361-6595/aabdd7

Yousfi, M., Benabdessadok, M. D., 1996. J. Appl. Phys. 80, 6619-6630. doi:10.1063/1.363785


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