Abstract

We investigate the fluorescence spectrum in a nearly degenerate atomic system of a Fe = 0 → Fg = 1 transition by analytically solving Schrödinger equations. An ultranarrow fluorescence spectral line in between the two coherent population trapping windows has been found. Our analytic solutions clearly show the origin of the ultranarrow spectral line. Due to quantum interference effects between two coherent population trapping states, the width and intensity of the central spectral line can be controlled by an external magnetic field. Such an effect may be used to detect a magnetic field.

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