English

Control of $\text{N}_2^+$ Air Lasing

Optics 2020-11-18 v1

Abstract

A near-infrared laser generates gain on transitions between the B2Σu+\text{B}^{\text{2}} \Sigma_{\text{u}}^{\text{+}} and X2Σg+\text{X}^{\text{2}} \Sigma_{\text{g}}^{\text{+}} states of the nitrogen molecular cation in part by coupling the X2Σg+\text{X}^{\text{2}} \Sigma_{\text{g}}^{\text{+}} and A2Πu\text{A}^{\text{2}} \Pi_{\text{u}} states in the V-system. Traditional time resolved pump-probe measurements rely on post-ionization coupling by the pump pulse to initialize dynamics in the A2Πu\text{A}^{\text{2}} \Pi_{\text{u}} state. Here we show that a weak second excitation pulse reduces ambiguity because it acts only on the ion independent of ionization. The additional control pulse can increase gain by moving population to the A2Πu\text{A}^{\text{2}} \Pi_{\text{u}} state, which modifies the lasing emission in two distinct ways. The presence of fast decoherence on X2Σg+\text{X}^{\text{2}} \Sigma_{\text{g}}^{\text{+}} to A2Πu\text{A}^{\text{2}} \Pi_{\text{u}} transitions may prevent the formation of a coherent rotational wave packet in the ground state in our experiment, but the control pulse can reverse impulsive alignment by the pump pulse to remove rotational wave packets in the B2Σu+\text{B}^{\text{2}} \Sigma_{\text{u}}^{\text{+}} state.

Keywords

Cite

@article{arxiv.2007.08619,
  title  = {Control of $\text{N}_2^+$ Air Lasing},
  author = {Mathew Britton and Marianna Lytova and Dong Hyuk Ko and Abdulaziz Alqasem and Peng Peng and D. M. Villeneuve and Chunmei Zhang and Ladan Arissian and P. B. Corkum},
  journal= {arXiv preprint arXiv:2007.08619},
  year   = {2020}
}
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