Excitation of Atoms and Broadening of Spectral LinesSpringer Science & Business Media, 6 груд. 2012 р. - 310 стор. Excitation of Atoms and Broadening of Spectral Lines povides a survey of elementary processes and mechanisms. It presents useful and relatively simple methods of approximation for calculating effective cross sections, giving a number of approximate formulas. Extensive tables list cross sections and rate coefficients for various atoms and elementary processes. The tables of cross sections were recalculated using an updated version of the computer code ATOM. Some material reflecting the recent progress in the field has been added to this new printing. |
Зміст
| 1 | |
| 9 | |
Approximate Methods for Calculating Cross Sections | 36 |
Collisions Between Heavy Particles | 88 |
Some Problems of Excitation Kinetics | 108 |
Tables and Formulas for the Estimation of Effective Cross | 154 |
157 | 211 |
203 | 218 |
Broadening of Spectral Lines | 237 |
References | 297 |
List of Symbols | 306 |
Інші видання - Показати все
Excitation of Atoms and Broadening of Spectral Lines Igorʹ Ilʹich Sobelʹman,Leonid A. Vainshtein Обмежений попередній перегляд - 1995 |
Excitation of Atoms and Broadening of Spectral Lines Igorʹ Ilʹich Sobelʹman,Leonid Abramovich Vaĭnshteĭn,Evgeniĭ Aleksandrovich I︠U︡kov Попередній перегляд недоступний - 1981 |
Excitation of Atoms and Broadening of Spectral Lines Igorʹ Ilʹich Sobelʹman,Leonid A. Vainshtein Попередній перегляд недоступний - 1995 |
Загальні терміни та фрази
5.0 Transition a₁ angular factors angular momentum asymptotic B₂ Born approximation Born cross sections Born-Oppenheimer approximation broadening cm³ collisional collisions condition consider corresponding Coulomb Coulomb-Born defined density density matrix dependence described dielectronic recombination Doppler Effective cross section effective principal quantum elastic scattering electron energy equation excitation cross section expression first-order formulas frequency given in Sect Green's function highly excited levels hydrogen hydrogenlike ions impact inelastic integral intensity distribution interaction ionization cross section j₁ k₁ Kmax Lorentzian distribution LS coupling matrix elements method multipole neutral atoms normalization numerical calculations obtain oscillator parameter perturbation theory perturbing particle Phys plasma population densities potential principal quantum number quasi-classical radial radiative transition rate coefficient resonance satellites shift spectral line spin Springer Table transition probability velocity wave functions width X₂ Απ ΔΕ Δη
