欢迎登录材料期刊网

材料期刊网

高级检索

利用脉冲激光双光子激发Rb(5S)到Rb(5DJ,7S)态,在样品池条件下,利用原子荧光光谱方法研究了Rb(SDJ,7S)+Rb(5S)的碰撞能量转移过程.利用三能级模型的速率方程分析,在不同的Rb(5S)密度下,通过对直接荧光和转移荧光的时间积分荧光强度的测量,得到了Rb(5D5/2)→Rb(5D3/2)精细结构转移截面为(3.7±0.9)×10-14cm2.而测得的碰撞转移到Rb(5DJ)以外态的截面是Rb(5D)→Rb(7S)转移截面和碰撞能量合并逆过程截面之和,还可测得Rb(5D)→Rb(7S)的碰撞转移截面为(1.6±0.4)×10-16cm2,故Rb(5D)+Rb(5S)→Rb(5P)+Rb(5P)的截面分别为(3.1±1.2)×10-14cm2(对J=5/2)和(2.0±0.6)×10-14cm2(对J=3/2),5DJ态主要是通过碰撞能量合并的逆过程(即Rb(5DJ)+Rb(5S)→Rb(5P)+Rb(5P))猝灭.

参考文献

[1] Vadla C,Horvatic V,Niemax K.Radiative transport and collisional transfer of excitation energy in Cs vapors mixed with Ar or He[J].J.Spectrochim.Acta.,2001,B 56:1236-1277.
[2] Movre M,Vadla C,Horvatic V.Mixing and quenching of the Cs 5DJ state induced by collisions with cesium groundstate atoms[J].J.Phys.,2001,B 33:3001-3011.
[3] Parker J W,Scluessler H A,Hill J R H,et al.Fine structure changing collision cross section within the low-lying n2D states of rubidium induced by ground-state rubidiun atoms[J].Phys.Rev.,1984,A 29(2):617-623.
[4] Marks A,Hickman A P,Streater A D,et al.Thermalization of fast cesium 5D3/2 atoms in collisions with ground-state cesium atoms[J].Phys.Rev.,2005,A71:012711-1-14.
[5] Qin Chen,Lin Jing,Wang Qian,et al.Radiation and collisional transfer of exitation energy in Cs (6P) atoms mixed with Ne[J].Chinese Journal of Qantum Electronics (量子电子学报),2007,24 (6):683-687 (in Chinese).
[6] Yuan Qianghua,Zhang Gangtai,Mu Baoxia,et al.Three-body collisions in cesium vapour in the presence of buffer gas[J].Chinese Journal of Quantum Electronics (量子电子学报),2006,23(.5):603-606 (in Chinese).
[7] Wery H G C,Harris M,Cooper J,et al.Collisional energy transfer between exited Sr[J].Phys.Rev.,1991,A 43(5):2237-2249.
[8] Namiotka R K,Huennekens J,Allegrini M.Energy-pooling collisions in potassium:4PJ+4PJ→4S+(nl=5P,6S,4D)[J].Phys.Rev.A,1997,56(1):514-520.
[9] Wang Qian,Shen Yifan,Dai Kang.Rate coefficients measurement for the energy-pooling collisions:Cs(5D)+Cs(5D)→Cs(6S)+Cs(nl=9D,11S,7F)[J].Opt.Comm.,2008,281:2112-2118.
[10] Yabuzaki T,Tam A C,Hou M,et al.Preferential excitation transfer in Cs* (6D3/2)→Cs(6S1/2) collisions[J].Opt.Comm.,1978,24(3):305-310.
[11] Orlovsky K,Grushevsky V,Ehers A.Theoretical study of energy transfer in Rb(7S)+Rb(5S) and Rb(5D)+Rb(5S)collisions[J].Eur.Phys.J.,2000,D 12:133-146.
[12] Filippo G De,et al.Reverse energy pooling in a KNa mixture[J].Phys.Rev.,1998,57 (1):255-265.
[13] Luna F R T,Cavalcanti G H,Coutinho L H,et al.A compilation of wavelengths and energy levels for the spectrum of neutral rubidium (RbI)[J].Quant.Spectrosc Radiat.Transfer.,2002,75:559-587.
[14] Fan L H,Chen J J,Lin Y Y,et al.Reaction of Rb(52D,72S) with H2[J].J.Phys.Chem.A,1999,103:1300-1305.
[15] Theodosiu C E.Lifetimes of alkalimetal atoms Rydberg states[J].Phys.Rev.A,1984,30 (6):2881-2909.
[16] Gallagher A,Lewis E L.Determination of the vapor pressure of rubidium by optical absorption[J].J.Opt.Soc.Am.,1973,63 (7):864-869.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%