We study radial wave packets produced by short-pulsed laser fields acting on Rydberg atoms, using analytical tools from supersymmetry-based quantum-defect theory. We begin with a time-dependent perturbative calculation for alkali-metal atoms, incorporating the atomic-excitation process. This provides insight into the general wave-packet behavior and demonstrates agreement with conventional theory. We then obtain an alternative analytical description of a radial wave packet as a member of a particular family of squeezed states, which we call radial squeezed states. By construction, these have close to minimum uncertainty in the radial coordinates during the first pass through the outer apsidal point. The properties of radial squeezed states ...
We have studied the ionization of Rydberg wave packets by subpicosecond, nearly unipolar electromagn...
Circular Rydberg states provide an ideal resource for large scale quantum computing and simulation t...
We give a qualitative review of theoretical ideas and experimental work on laser-induced excitation ...
We outline an analytical framework for the treatment of radial Rydberg wave packets produced by shor...
Atomic supersymmetry provides an analytical effective-potential model useful for describing certain ...
We show that a theoretical description of radial Rydberg wave packets in alkali-metal atoms based so...
The revival structure and evolution of Rydberg wave packets are studied on a time scale much greater...
We present a theoretical construction for closest-to-classical wave packets localized in both angula...
Wave packet phenomena in Rydberg atoms represent the scope of the present work. In the centre of int...
We construct minimum-uncertainty solutions of the three-dimensional Schr\"odinger equation with a Co...
Atoms in high-lying Rydberg states with large values of principal quantum number n, n ≥300, form ...
International audienceOwing to their large size, Rydberg atoms are promising tools for quantum techn...
The authors have excited and detected a radially localized electronic wavepacket in atomic rubidium....
The remarkable level of control of atomic wavepackets that can be achieved using very-high-n Rydberg...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
We have studied the ionization of Rydberg wave packets by subpicosecond, nearly unipolar electromagn...
Circular Rydberg states provide an ideal resource for large scale quantum computing and simulation t...
We give a qualitative review of theoretical ideas and experimental work on laser-induced excitation ...
We outline an analytical framework for the treatment of radial Rydberg wave packets produced by shor...
Atomic supersymmetry provides an analytical effective-potential model useful for describing certain ...
We show that a theoretical description of radial Rydberg wave packets in alkali-metal atoms based so...
The revival structure and evolution of Rydberg wave packets are studied on a time scale much greater...
We present a theoretical construction for closest-to-classical wave packets localized in both angula...
Wave packet phenomena in Rydberg atoms represent the scope of the present work. In the centre of int...
We construct minimum-uncertainty solutions of the three-dimensional Schr\"odinger equation with a Co...
Atoms in high-lying Rydberg states with large values of principal quantum number n, n ≥300, form ...
International audienceOwing to their large size, Rydberg atoms are promising tools for quantum techn...
The authors have excited and detected a radially localized electronic wavepacket in atomic rubidium....
The remarkable level of control of atomic wavepackets that can be achieved using very-high-n Rydberg...
Atoms excited into states of high principal quantum number, Rydberg atoms, have exaggerated properti...
We have studied the ionization of Rydberg wave packets by subpicosecond, nearly unipolar electromagn...
Circular Rydberg states provide an ideal resource for large scale quantum computing and simulation t...
We give a qualitative review of theoretical ideas and experimental work on laser-induced excitation ...