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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Electric field induced anomalies in frequency shift and collisional perturbations in the 5snd ~(1)D_(2) Rydberg series of strontium in a heatpipe setup with ionization detection
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Electric field induced anomalies in frequency shift and collisional perturbations in the 5snd ~(1)D_(2) Rydberg series of strontium in a heatpipe setup with ionization detection

机译:带电离检测的热管中5s〜(1)D_(2)Rydberg系列锶的电场引起的频移和碰撞扰动异常

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We have examined the effect of weak DC electric field (2-20 V/cm) complimented by foreign gas collisions on the bound J velence 2 even-parity 5snd ~(1)D_(2) Rydberg states of neutral strontium. We use resonant two-photon transverse excitation, employing a narrow bandwidth tunable dye laser and an atomic jet in a heatpipe setup with ionization detection. In this paper we report certain anomalies in the observed spectra covering principal quantum number range n velence 27-42 indicating a frequency shift reversal with nearly quadratic dependence on the field strength above an anti-resonance region. Furthermore, we have observed the emergence of highly localized doubly-excited 4d~(2) states, including a remarkably broad perturber with large angular momentum, uncovering orbital contraction effect. This non-Rydberg excitation, which intrudes upon the two-photon spectrum with large energy overlap is due to single-photon excitations from the 5s5p ~(1)P_(1) resonance level following molecular dissociation of the Sr_(2) dimers suitably governed by binary atomic collisions. Our study which involves laser excitation complimented by electric field and collisions using inexpensive home-made setup opens up the possibilities for a new class of experiments, with considerable simplicity in the choice of excitation schemes for both Rydberg and non-Rydberg transitions, to reach states lying at high energies which cannot otherwise be accessed from the ground state due to parity and selection rules, while allowing one to probe localization properties of atomic wave functions.
机译:我们研究了外来气体碰撞补充的弱直流电场(2-20 V / cm)对中性锶的束缚J velence 2均匀奇偶5snd〜(1)D_(2)Rydberg态的影响。我们使用共振的双光子横向激发,在热管装置中采用窄带可调染料激光器和原子射流,并进行电离检测。在本文中,我们报告了观察到的光谱中的某些异常,这些光谱覆盖了主要量子数范围n velence 27-42,表明频移反转与反谐振区域上方的场强几乎呈二次依赖关系。此外,我们还观察到了高度局部化的双激发4d〜(2)状态的出现,其中包括一个具有大角动量的非常宽的扰动,揭示了轨道收缩效应。这种非里德堡激发,以大的能量重叠进入双光子光谱,是由于在适当控制的Sr_(2)二聚体分子解离后,来自5s5p〜(1)P_(1)共振能级的单光子激发所致。通过二元原子碰撞。我们的研究涉及使用廉价的自制装置通过电场和碰撞来补充激光激发,从而为新型实验提供了可能性,并且为里德伯格和非里德伯格转变选择激发方案非常简单处于高能状态,由于奇偶校验和选择规则,它们无法从基态获取,同时允许人们探测原子波函数的定位特性。

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