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  • Cite this article:

    Lu Zhen-Zhong, Chen De-Ying, Fan Rong-Wei, Xia Yuan-Qin. Laser-induced quadrupole–quadrupole collisional energy transfer in Xe–KrJ. Chin. Phys. B, 2011, 20(6): 063202.
    Lu Zhen-Zhong, Chen De-Ying, Fan Rong-Wei, Xia Yuan-Qin. Laser-induced quadrupole–quadrupole collisional energy transfer in Xe–KrJ. Chin. Phys. B, 2011, 20(6): 063202.
  • Laser-induced quadrupole–quadrupole collisional energy transfer in Xe–Kr

    • By considering the relative velocity distribution function and multipole expansion interaction Hamiltonian, a three-state model for calculating the cross section of laser-induced quadrupole-quadrupole collisional energy transfer is presented. Calculated results in Xe-Kr system show that in the present system, the laser-induced collision process occurs for ~4 ps, which is much shorter than the dipole-dipole laser-induced collisional energy transfer (LICET) process. The spectrum of laser-induced quadrupole-quadrupole collisional energy transfer in Xe-Kr system has wider tunable range in an order of magnitude than the dipole-dipole LICET spectra. The peak cross section decreases and moves to the quasi-static wing with increasing temperature and the full width at half peak of the profile becomes larger as the system temperature increases.
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