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首页> 外文期刊>Journal of physical chemistry letters >Rydberg-State-Resolved Resonant Energy Transfer in Cold Electric-Field-Controlled Intrabeam Collisions of NH3 with Rydberg He Atoms
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Rydberg-State-Resolved Resonant Energy Transfer in Cold Electric-Field-Controlled Intrabeam Collisions of NH3 with Rydberg He Atoms

机译:Rydberg-State解决的谐振能量转移在冷电 - 电场控制的NH3中的Intrabeam碰撞与Rydberg He原子

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The resonant transfer of energy from the inversion sublevels in NH3 to He atoms in triplet Rydberg states with principal quantum number n = 38 has been controlled using electric fields below 15 V/cm in intrabeam collisions at translational temperatures of similar to 1 K. The experiments were performed in pulsed supersonic beams of NH3 seeded in He at a ratio of 1:19. The He atoms were prepared in the metastable 1s2s(3)S(1) level in a pulsed electric discharge in the trailing part of the beams. The velocity slip between the heavy NH3 and the lighter metastable He was exploited to perform collision studies at center-of-mass collision speeds of similar to 70 m/s. Resonant energy transfer in the atom-molecule collisions was identified by Rydberg-state-selective electric-field ionization. The experimental data have been compared to a theoretical model of the resonant dipole-dipole interactions between the collision partners based on the impact parameter method.
机译:在具有主量子数n = 38的三元rydberg状态中从NH3中的反转簧下的能量从NH3中的常量转移到HE原子,在类似于1K的平晶温度下的Intrabeam碰撞中的电场被控制在interlabeam碰撞中。实验 以1:19的比例在他的NH3播种的脉冲超声波束中进行。 在梁的后部的脉冲放电中,在亚稳的1S2S(3)级(1)水平中制备HE原子。 重型NH3之间的速度滑动和较轻的稳定性,他被剥削以在质量碰撞速度下进行碰撞研究,类似于70米/秒。 通过Rydberg-nation选择的电场电离鉴定原子分子碰撞中的共振能量转移。 将实验数据与基于冲击参数法的碰撞伙伴之间的谐振偶极子 - 偶极相互作用进行了比较。

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