We show that a theoretical description of radial Rydberg wave packets in alkali-metal atoms based solely on hydrogenic wave functions and energies is insufficient to explain data that could be obtained in pump-probe experiments with current technology. The modifications to long-term revival times induced by quantum defects cannot be obtained by direct scaling of the hydrogenic results. Moreover, the effects of laser detuning and quantum defects are different. An alternative approach providing analytical predictions is presented
The article discusses the properties of time evolution of wave packets in a few systems. Dynamics of...
The remarkable level of control of atomic wavepackets that can be achieved using very-high-n Rydberg...
The complex processes leading to the collisional population of ultra-long-lived Rydberg states with ...
We study radial wave packets produced by short-pulsed laser fields acting on Rydberg atoms, using an...
The revival structure and evolution of Rydberg wave packets are studied on a time scale much greater...
We outline an analytical framework for the treatment of radial Rydberg wave packets produced by shor...
We present a theoretical construction for closest-to-classical wave packets localized in both angula...
Atomic supersymmetry provides an analytical effective-potential model useful for describing certain ...
Wave packet phenomena in Rydberg atoms represent the scope of the present work. In the centre of int...
We study highly excited hydrogen and alkali atoms ('Rydberg states') under the influence of a strong...
It is known that, after formation, a Rydberg wave packet undergoes a series of collapses and revival...
Coherent dynamical behavior is observed in the heavy Rydberg system H+H-. Because of the large mass,...
The authors have excited and detected a radially localized electronic wavepacket in atomic rubidium....
Recent theoretical studies with alkali atoms A$^{\ast}$ excited to high Rydberg states predicted the...
We construct minimum-uncertainty solutions of the three-dimensional Schrödinger equation with a Coul...
The article discusses the properties of time evolution of wave packets in a few systems. Dynamics of...
The remarkable level of control of atomic wavepackets that can be achieved using very-high-n Rydberg...
The complex processes leading to the collisional population of ultra-long-lived Rydberg states with ...
We study radial wave packets produced by short-pulsed laser fields acting on Rydberg atoms, using an...
The revival structure and evolution of Rydberg wave packets are studied on a time scale much greater...
We outline an analytical framework for the treatment of radial Rydberg wave packets produced by shor...
We present a theoretical construction for closest-to-classical wave packets localized in both angula...
Atomic supersymmetry provides an analytical effective-potential model useful for describing certain ...
Wave packet phenomena in Rydberg atoms represent the scope of the present work. In the centre of int...
We study highly excited hydrogen and alkali atoms ('Rydberg states') under the influence of a strong...
It is known that, after formation, a Rydberg wave packet undergoes a series of collapses and revival...
Coherent dynamical behavior is observed in the heavy Rydberg system H+H-. Because of the large mass,...
The authors have excited and detected a radially localized electronic wavepacket in atomic rubidium....
Recent theoretical studies with alkali atoms A$^{\ast}$ excited to high Rydberg states predicted the...
We construct minimum-uncertainty solutions of the three-dimensional Schrödinger equation with a Coul...
The article discusses the properties of time evolution of wave packets in a few systems. Dynamics of...
The remarkable level of control of atomic wavepackets that can be achieved using very-high-n Rydberg...
The complex processes leading to the collisional population of ultra-long-lived Rydberg states with ...