Unusual Rydberg System Consisting of a Positively Charged Helium Nanodroplet with an Orbiting Electron

Evgeniy Loginov, Marcel Drabbels

Physical Review Letters · 2011 · 41 citations · 22 references

DOIFull text

Open access

Concepts

Abstract

Evidence is presented of an unusual Rydberg system consisting of a helium nanodroplet containing a positively charged sodium ion and an orbiting electron. Rydberg states of this system with principal quantum number n<20 are found to be unstable on a nanosecond time scale. In contrast, Rydberg states with n≳100 are found to have a lifetime of 1.1 μs. In addition, it is found that the ionization threshold of sodium-doped helium is broadened and redshifted with respect to that of the free atom. These observations are successfully reproduced using a pseudodiatomic description of the system in which the interactions of the sodium and its ion with the helium are calculated as the sum of pair potentials.

References

22