We present a theoretical study of the time evolution of Rydberg wavepacket, initially localized in radial space and mimicking the classical particle, undergoing microwave multiphoton ionization. The dynamical behavior of the Rydberg wavepacket is found to be different from that of Rydberg atoms init
Controlled suppression of ionization of Rydberg atoms in a microwave field
β Scribed by Dmitry Manakov; T. Uzer
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 813 KB
- Volume
- 100
- Category
- Article
- ISSN
- 0167-2789
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β¦ Synopsis
A computational procedure for controlling the stochastic ionization of one-dimensional single electron Rydberg atoms in the correspondence principle regime is developed. Using our procedure it is possible to suppress excitation and ionization of the one-dimensional Rydberg atom even in strong microwave fields for which ionization would otherwise be instantaneous.
π SIMILAR VOLUMES
The efficiency of collsional ionization of escited rubidium atoms is demonstrated for \(\mathrm{Rb}^{*}-\mathrm{Kr}\) collisions Since the power required to optically saturate the Rydberg levels is much lower than for phototonization, the technique promisus to reduce the laser requrements in sungle-