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Stimulated emission spectroscopy of Rydberg matter: observation of Rydberg orbits in the core ions

机译:里德堡物质的受激发射光谱:观察核心离子中的里德堡轨道

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The short-wavelength bands generated in Rydberg matter (RM) formed by K atoms have been studied both in an operating laser cavity and by amplified emission in the RM, with higher resolution than previously. Transitions down to principal quantum number n″ ≥ 6 in the core ions have been identified previously in the infrared range, while transitions down to n″ = 5 and 4 are now observed for transitions of the type n″ = 7 → 4. Efficient down-conversion of emitted wavelengths shorter than 800 nm is found in the RM medium in the cavity by a process similar to two-photon emission. From the good description of the transitions with just one quantum number n″, it is concluded that the transitions studied are single-electron transitions in the core ions coupled to the conduction band; two-electron processes as proposed previously are not involved in this wavelength range where the change in angular momentum is relatively small.
机译:由K原子形成的里德堡物质(RM)产生的短波带已在工作的激光腔中以及通过RM中的放大发射进行了研究,其分辨率比以前更高。先前已经在红外范围内确定了在核心离子中向下转变为主量子数n''≥6的跃迁,而现在对于类型为n''= 7→4的跃迁,观察到向下跃迁到n''= 5和4。通过类似于双光子发射的过程,在腔体的RM介质中发现了短于800 nm的发射波长的转换。从对只有一个量子数n''的跃迁的良好描述,可以得出结论,所研究的跃迁是耦合到导带的核心离子中的单电子跃迁;在角动量变化相对较小的该波长范围内,不涉及先前提出的双电子过程。

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