论文标题
静电捕获的rydberg无分子的慢衰减过程
Slow decay processes of electrostatically trapped Rydberg NO molecules
论文作者
论文摘要
一氧化氮(NO)分子最初以795 m/s的脉冲超音速束传动,已将光电在长寿命的氢化rydberg-stark状态下进行,并在低温冷却的,芯片基础的Transpormation-Line Line Rydberg-stark-Stark-Stark-Stark-Stark Stark Stark减速器中被减速和静电被困。通过脉冲电场电离检测到减速和被困的分子在$ $ $ $ $的情况下被发现。通过将实验数据与粒子轨迹的数值计算结果进行比较来验证减速器的操作。关于在1 ms的时间尺度上,对被困分子衰变的研究为黑体辐射对rydberg no的寿命和影响提供了新的见解。
Nitric oxide (NO) molecules initially traveling at 795 m/s in pulsed supersonic beams have been photoexcited to long-lived hydrogenic Rydberg-Stark states, decelerated and electrostatically trapped in a cryogenically cooled, chip-based transmission-line Rydberg-Stark decelerator. The decelerated and trapped molecules were detected $in$ $situ$ by pulsed electric field ionization. The operation of the decelerator was validated by comparison of the experimental data with the results of numerical calculations of particle trajectories. Studies of the decay of the trapped molecules on timescales up to 1 ms provide new insights into the lifetimes of, and effects of blackbody radiation on, Rydberg states of NO.