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Nuclear spin/rotation interaction from molecular beam resonance

The rotational and Zeeman perturbation Hamiltonian (X) to the electronic eigenstates was given in equation (8.105). It did not, however, contain terms which describe the interaction effects arising from nuclear spin. These are of primary importance in molecular beam magnetic resonance studies, so we must now extend our treatment and, in particular, demonstrate the origin of the terms in the effective Hamiltonian already employed to analyse the spectra. Again the treatment will apply to any molecule, but we shall subsequently restrict attention to diatomic systems. [Pg.410]


See other pages where Nuclear spin/rotation interaction from molecular beam resonance is mentioned: [Pg.219]    [Pg.11]    [Pg.11]    [Pg.15]    [Pg.919]    [Pg.1030]    [Pg.15]    [Pg.919]    [Pg.1031]   
See also in sourсe #XX -- [ Pg.490 ]




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Interacting resonances

Interactions rotational

Molecular beam

Molecular beam resonance

Molecular interactions

Molecular interactive

Molecular resonance

Molecular spin resonator

Nuclear interaction

Nuclear rotation

Nuclear spin

Nuclear spins resonance

Resonance interaction

Resonant interaction

Rotating Beams

Rotation interaction

Rotation, molecular

Spin interactions

Spin molecular

Spin rotation

Spin-rotation interactions

Spin-rotational interaction

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