Abstract. A remarkable property of Rydberg atoms is the possibility to create molecules formed by one highly excited atom and another atom in the ground state. The first realisation of such a Rydberg molecule has opened an active field of physical investigations, and showed that its basic properties can be described within a simple model regarding the ground state atom as a small perturber that is bound by a low-energy scattering process with the Rydberg electron [C. H. Greene et al, Phys. Rev. Lett., 85: 2458 (2000)]. Besides the good agreement between theory and the experiment concerning the vibrational states of the molecule, the experimental observations yield the astonishing feature that the lifetime of the molecule is clearly reduced ...
In this paper we explore the dynamics of the mixed Stark manifold of ultrahigh Rydberg states (princ...
International audienceA Rydberg molecule is composed of an outer electron that collides on the resid...
Author Institution: ETH Zurich, Laboratorium fur Physikalische Chemie, Wolfgang-Pauli-Strasse 10, 80...
Since their first experimental observation, ultralong-range Rydberg molecules consisting of a highly...
We present a novel binding mechanism where a neutral Rydberg atom and an atomic ion form a molecular...
We summarize recent theoretical advances in the description of the evolution of Rydberg atoms subjec...
We report on the observation of two vibrational series of pure trilobite rubidium Rydberg molecules....
Author Institution: Department of Physics, University of Connecticut, Storrs, CT 06269-3046A class o...
Author Institution: Herzberg Institute of Astrophysics, National Research Council of CanadaThe histo...
In Rydberg atoms, at least one electron is excited to a state with a high principal quantum number. ...
The properties of a Rydberg atom immersed in an ultracold environment were investigated. Two scenari...
With increasing complexity of the quantum description of nature, the possibility to simulate physica...
The lifetimes of the lower-lying vibrational states of ultra-long-range strontium Rydberg molecules ...
International audienceThe Rydberg spectrum of Na2 has been shown previously to alternate when increa...
We report the creation of ultra-long-range Sr2 molecules comprising one ground-state 5s2 1S0 atom an...
In this paper we explore the dynamics of the mixed Stark manifold of ultrahigh Rydberg states (princ...
International audienceA Rydberg molecule is composed of an outer electron that collides on the resid...
Author Institution: ETH Zurich, Laboratorium fur Physikalische Chemie, Wolfgang-Pauli-Strasse 10, 80...
Since their first experimental observation, ultralong-range Rydberg molecules consisting of a highly...
We present a novel binding mechanism where a neutral Rydberg atom and an atomic ion form a molecular...
We summarize recent theoretical advances in the description of the evolution of Rydberg atoms subjec...
We report on the observation of two vibrational series of pure trilobite rubidium Rydberg molecules....
Author Institution: Department of Physics, University of Connecticut, Storrs, CT 06269-3046A class o...
Author Institution: Herzberg Institute of Astrophysics, National Research Council of CanadaThe histo...
In Rydberg atoms, at least one electron is excited to a state with a high principal quantum number. ...
The properties of a Rydberg atom immersed in an ultracold environment were investigated. Two scenari...
With increasing complexity of the quantum description of nature, the possibility to simulate physica...
The lifetimes of the lower-lying vibrational states of ultra-long-range strontium Rydberg molecules ...
International audienceThe Rydberg spectrum of Na2 has been shown previously to alternate when increa...
We report the creation of ultra-long-range Sr2 molecules comprising one ground-state 5s2 1S0 atom an...
In this paper we explore the dynamics of the mixed Stark manifold of ultrahigh Rydberg states (princ...
International audienceA Rydberg molecule is composed of an outer electron that collides on the resid...
Author Institution: ETH Zurich, Laboratorium fur Physikalische Chemie, Wolfgang-Pauli-Strasse 10, 80...