The Timetable Interaction in quantum systems. Report (original) (raw)
2014
Abstract
ABSTRACT The Lithium atom with 2S-2P quantum transition was assayed as the two - level system, which interacted with electromagnetic �eld that depend on the time periodically. The practices of the resonance ionization spectroscopy and some secondary observed experimental results (laser induced low density plasma production, experimental technical problems) were used as attendant circumstances with some application of the Doppler e�ect, which were im- portant for theoretical reasoning by used examples of quazi resonance transi- tions with both the single and the bichromate frequency detuning. The well known problem of the time - frequency was touched on for quantum transi- tions. The in uence of the fractional e�ect on quantum transitions, namely The Timetable Interaction, was introduced as a special connection between spontaneous emission time, the lifetime and the time of atom-�eld interac- tion. Centered at the resonance frequency Lorentzian pro�les were used for proposed the time interaction model. New ideas (postulates) were given for special physical problems.
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