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Theory of atomic structure and transition probabilities
Theory of atomic structures transitions and molecular potential
Observed structure of atomic spectra IAEASMR124 5
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absorption adiabatic angle angular momentum asymptotic atoms axis beam broadening calculation classical close-coupling co-ordinates coefficients collisions components configurations consider constant continuum correlation correspondence principle corresponding coupling defined density depends diagonal dipole dye laser effect eigenfunctions emission equation example excited experimental expression field formula frequency given gives Hamiltonian Hartree-Fock hydrogen hyperfine structure impact inelastic integral intensity interaction internuclear ionization ions isotope Lett linear magnetic matrix elements measured method mode-locked molecular molecule multiplet nuclear nucleus observed obtained operator optical orbital oscillator strength parameters particles perturbation phase shift photocathode photoionization photon Phys Physics picosecond polarization potential curves predissociation Proc pulse pumped quantum number radiation region resonance Rhodamine 6G rotational Rydberg scattering amplitude selection rules shown in Fig solution spectra spectrum spin spin-orbit spin-orbit interaction streak camera structure symmetry theoretical theory values vector velocity vibrational wave function width