Rotational coherence encoded in an "Air-Laser" spectrum of nitrogen molecular ions in an intense laser field

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Abstract

We investigate lasing action in aligned nitrogen molecular ions (N2+) produced in an intense laser field. We find that, besides the population inversion between the B2 ∑u+ - X2 ∑g+ states, which is responsible for the observed simulated amplification of a seed pulse, a rotational wave packet in the ground vibrational state (v=0) of the excited electronic B2 ∑u+ state has been created in N2+. The rotational coherence can faithfully encode its characteristics into the amplified seed pulses, enabling reconstruction of rotational wave packets of molecules in a single-shot detection manner from the frequency-resolved laser spectrum. Our results suggest that the air laser can potentially provide a promising tool for remote characterization of coherent molecular rotational wave packets.

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Zhang, H., Jing, C., Yao, J., Li, G., Zeng, B., Chu, W., … Xu, Z. (2014). Rotational coherence encoded in an “Air-Laser” spectrum of nitrogen molecular ions in an intense laser field. Physical Review X, 3(4). https://doi.org/10.1103/PhysRevX.3.041009

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