{"qid": "D110234", "reaction": "e- + T2+ 1s-\u03c3g1;v=17 \u2192 T2+ 2p-\u03c0u1 + e-", "process_types": {"EXE": "Electronic Excitation"}, "data_type": "cross section", "refs": {"B66": {"doi": "10.1103/physreva.90.022711"}}, "comment": "Convergent close-coupling calculations of electron scattering from T2+ initially in the electronic ground 1sSg, vibrational state v_i=17. Integrated cross sections for the transition (1sSg, v_i) ---> 2pPu, where s and p refers to orbital angular momentum l = 0 and l = 1, respectively, S refers to the symbol sigma (orbital angular momentum projection m = 0), P refers to the symbol pi (orbital angular momentum projection |m| = 1), and g and u refers to states even or odd parity, respectively. Cross sections are calculated in the adiabatic-nuclei approximation where the cross section have been summed analytically over all final rotational and vibrational states. These cross sections were calculated with a 351-state CCC calculation. To reference and for details see M. C. Zammit, D. V. Fursa, and I. Bray, Phys. Rev. A 90, 022711 (2014).", "method": "theory", "columns": [{"name": "E", "units": "eV"}, {"name": "sigma", "units": "cm2"}], "from_aladdin": true, "metadata_version": "M1.0", "time_added": "2023-02-09 16:07:05.723896+00:00"} ------------------------------------------------------------------------ 1.150e+01 1.975 1.300e+01 2.197 1.500e+01 1.536 2.000e+01 1.531 3.000e+01 1.643 4.000e+01 1.743 5.000e+01 1.746 6.000e+01 1.735 7.500e+01 1.688 9.000e+01 1.621 1.000e+02 1.57 1.150e+02 1.496 1.300e+02 1.424 1.500e+02 1.333 1.750e+02 1.232 2.000e+02 1.146 2.500e+02 1.002 3.000e+02 0.8916 4.000e+02 0.7353 5.000e+02 0.6279 6.250e+02 0.5328 7.500e+02 0.4646 1.000e+03 0.3726