Three-body recombination of ultracold barium plasma created by two-step photoionization of atoms through an excited 6s6p 1P1 level

被引:0
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作者
Kosarev, N. I. [1 ]
机构
[1] Siberian Fed Univ, Inst Nonferrous Met & Mat Sci, Dept Fundamental Sci Educ, Krasnoyarsk 660025, Russia
关键词
LASER;
D O I
10.1063/5.0129435
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
The kinetics of ionization and recombination of an ultracold barium plasma created in a two-step process, taking into account the transfer of resonant radiation in 3D cylindrical geometry, is studied by numerical simulation. At the first step, a pump laser excites the upper level of the resonant transition 6 s 2 S 1 0 ? 6s6p P-1(1) (lambda(1) = 553.5 nm). At the second step, the laser with quantum energy exceeding the ionization potential from the level 6s6p P-1(1) ( lambda(2) = 417.79 nm) ionizes the atoms. A scheme is proposed for increasing the efficiency of electron yield: at the second ionization step, the laser radiation with frequency corresponding to the continuum from the metastable D-3(2) is used. The electron temperature from the initial value 0.1 K during the action of the pump and ionizing lasers increases by more than 200 times due to superelastic processes. As a result, the time of three-body recombination of plasma increases significantly. The results of numerical simulation indirectly confirm the fact of Killian et al. [Phys. Rev. Lett. 83(23), 4776 (1999)] that the deceleration of recombination of ultracold xenon plasma can be explained by the heating of electrons in superelastic quenching collisions. Published under an exclusive license by AIP Publishing.
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