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The role of orbiting resonances in the vibrational relaxation of I 2(B,v′ = 21) by collisions with He at very low energies: A theoretical and experimental study

机译:在极低能量下与He碰撞时轨道共振在I 2(B,v'= 21)的振动弛豫中的作用:理论和实验研究

摘要

The low-energy collisions of I 2(B,v′ = 21) with He involving collision-induced vibrational relaxation of I 2 are investigated both experimentally and by means of wave packet simulations. The theoretical cross sections exhibit a structure of peaks originated by orbiting resonances of the I 2(B,v′ = 21) - He van der Waals complex formed in the I 2 + He collisions. Such a structure has similar characteristics as the structure of peaks found in the experimental cross sections. In fact, four of the five peaks of the measured cross sections appear at positions nearly coincident with those of four of the peaks found in the theoretical cross sections. Thus this result confirms the experimental finding that enhancement of I 2 vibrational relaxation is caused by the population of I 2(B,v′ = 21) - He orbiting resonances populated upon the low-energy collisions. The possibility of using this mechanism in the vibrational cooling of diatomic molecules is discussed. © the Owner Societies 2012.
机译:实验研究了I 2(B,v'= 21)与He的低能碰撞,涉及碰撞引起的I 2的振动弛豫,并通过波包模拟进行了研究。理论截面显示出峰结构,该峰结构是由I 2 + He碰撞中形成的I 2(B,v'= 21)-He van der Waals络合物的轨道共振引起的。这种结构具有与在实验截面中发现的峰的结构相似的特征。实际上,测量横截面的五个峰中的四个出现在与理论横截面中发现的四个峰中的四个几乎重合的位置。因此,该结果证实了以下实验发现:I 2振动弛豫的增强是由I 2(B,v'= 21)的种群引起的。讨论了在双原子分子的振动冷却中使用这种机制的可能性。 ©业主协会2012。

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