• Photonics Research
  • Vol. 9, Issue 10, 2046 (2021)
Hongqiang Xie1、2、†, Hongbin Lei2、†, Guihua Li2、3, Jinping Yao4, Qian Zhang2, Xiaowei Wang2, Jing Zhao2, Zhiming Chen1, Ya Cheng5, and Zengxiu Zhao2、*
Author Affiliations
  • 1School of Science, East China University of Technology, Nanchang 330013, China
  • 2Department of Physics, National University of Defense Technology, Changsha 410073, China
  • 3School of Science, East China Jiaotong University, Nanchang 330013, China
  • 4State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-intense Laser Science, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences (CAS), Shanghai 201800, China
  • 5State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai 200062, China
  • show less
    DOI: 10.1364/PRJ.434378 Cite this Article Set citation alerts
    Hongqiang Xie, Hongbin Lei, Guihua Li, Jinping Yao, Qian Zhang, Xiaowei Wang, Jing Zhao, Zhiming Chen, Ya Cheng, Zengxiu Zhao. Controlling the collective radiative decay of molecular ions in strong laser fields[J]. Photonics Research, 2021, 9(10): 2046 Copy Citation Text show less

    Abstract

    Molecular ions, produced via ultrafast ionization, can be quantum emitters with the aid of resonant electronic couplings, which makes them the ideal candidates to study strong-field quantum optics. In this work, we experimentally and numerically investigate the necessary condition for observing a collective emission arising from macroscopic quantum polarization in a population-inverted N2+ gain system, uncovering how the individual ionic emitters proceed into a coherent collection within hundreds of femtoseconds. Our results show that for a relatively high-gain case, the collective emission behaviors can be readily initiated for all the employed triggering pulse area. However, for a low-gain case, the superradiant amplification is quenched since the building time of macroscopic interionic quantum coherence exceeds the dipole dephasing time, in which situation the seed amplification and free induction decay play an essential role. These findings not only clarify the contentious key issue regarding to the amplification mechanism of N2+ lasing but also show the unique characteristics of ultrashort laser-induced amplification in a molecular ion system where both the microscopic and macroscopic quantum coherence might be present.
    dρ+dt=i[H,ρ+]+(dρiνk+dt)ion+(dρ+dt)coll,

    View in Article

    H=[EBνk0dBXνν·εp0EAνkdAXνν·εpdBXvν·εpdAXνν·εpEXνk],

    View in Article

    (cz+t)E=iΩ0σBX,

    View in Article

    dρdt=i[Htwo,ρ]+(dρdt)coll,

    View in Article

    Htwo=[EB0dBX00ε(t)dBX00ε(t)EX0].

    View in Article

    (dρBBdt)coll=ρBBT1;(dρijdt)coll=ρijT2,ij,

    View in Article

    Hongqiang Xie, Hongbin Lei, Guihua Li, Jinping Yao, Qian Zhang, Xiaowei Wang, Jing Zhao, Zhiming Chen, Ya Cheng, Zengxiu Zhao. Controlling the collective radiative decay of molecular ions in strong laser fields[J]. Photonics Research, 2021, 9(10): 2046
    Download Citation