The effect of electric field maximum on the Rabi flopping and generated higher frequency spectra

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Abstract

We investigate the effect of the electric field maximum on the Rabi flopping and the generated higher frequency spectra properties by solving Maxwell-Bloch equations without invoking any standard approximations. It is found that the maximum of the electric field will lead to carrier-wave Rabi flopping (CWRF) through reversion dynamics which will be more evident when the applied field enters the sub-one-cycle regime. Therefore, under the interaction of sub-one-cycle pulses, the Rabi flopping follows the transient electric field tightly through the oscillation and reversion dynamics, which is in contrast to the conventional envelope Rabi flopping. Complete or incomplete population inversion can be realized through the control of the carrier-envelope phase (CEP). Furthermore, the generated higher frequency spectra will be changed from distinct to continuous or irregular with the variation of the CEP. Our results demonstrate that due to the evident maximum behavior of the electric field, pulses with different CEP give rise to different CWRFs, and then different degree of interferences lead to different higher frequency spectral features. © IOP Publishing Ltd and Deutsche Physikalische Gesellschaft.

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CITATION STYLE

APA

Niu, Y., Cui, N., Xiang, Y., Li, R., Gong, S., & Xu, Z. (2008). The effect of electric field maximum on the Rabi flopping and generated higher frequency spectra. New Journal of Physics, 10. https://doi.org/10.1088/1367-2630/10/10/103028

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