The NL-eEDM collaboration is building an experimental setup to search for the permanent electric dipole moment of the electron in a slow beam of cold barium fluoride molecules [NL-eEDM Collaboration, Eur. Phys. J. D 72, 197 (2018)]. Knowledge of the molecular properties of BaF is thus needed to plan the measurements and, in particular, to determine the optimal laser-cooling scheme. Accurate and reliable theoretical predictions of these properties require the incorporation of both high-order correlation and relativistic effects in the calculations. In this work, theoretical investigations of the ground and lowest excited states of BaF and its lighter homologs, CaF and SrF, are carried out in the framework of the relativistic Fock-space coupl...
The observation of an electron electric dipole moment (eEDM) larger than the value allowed by the St...
We theoretically investigate the laser cooling of fermionic barium monofluoride (137BaF) molecules, ...
Heavy diatomic molecules are currently considered to be among the most sensitive systems used in the...
The NL-eEDM collaboration is building an experimental setup to search for the permanent electric dip...
Abstract: We investigate the merits of a measurement of the permanent electric dipole moment of the ...
Cold molecules are attractive for a wide range of scientific applications, including quantum computa...
A measurement of the magnitude of the electric dipole moment of the electron (eEDM) larger than that...
Franck Condon factors (FCFs) among low-lying electronic states of a molecule are of paramount import...
As the NL-eEDM collaboration, we are searching for a permanent electric dipole moment on the electro...
Motivated by a diverse range of applications in physics and chemistry, currently there is great inte...
Heavy diatomic molecules are currently considered to be among the most sensitive systems used in the...
We have started a program to perform a measurement of the permanent electric dipole moment of the el...
Barium fluoride BaF is one of the heaviest molecular candidates for effective laser cooling, and as ...
Laser cooling molecules to the ultracold regime is the prerequisite for many novel science and techn...
The observation of an electron electric dipole moment (eEDM) larger than the value allowed by the St...
We theoretically investigate the laser cooling of fermionic barium monofluoride (137BaF) molecules, ...
Heavy diatomic molecules are currently considered to be among the most sensitive systems used in the...
The NL-eEDM collaboration is building an experimental setup to search for the permanent electric dip...
Abstract: We investigate the merits of a measurement of the permanent electric dipole moment of the ...
Cold molecules are attractive for a wide range of scientific applications, including quantum computa...
A measurement of the magnitude of the electric dipole moment of the electron (eEDM) larger than that...
Franck Condon factors (FCFs) among low-lying electronic states of a molecule are of paramount import...
As the NL-eEDM collaboration, we are searching for a permanent electric dipole moment on the electro...
Motivated by a diverse range of applications in physics and chemistry, currently there is great inte...
Heavy diatomic molecules are currently considered to be among the most sensitive systems used in the...
We have started a program to perform a measurement of the permanent electric dipole moment of the el...
Barium fluoride BaF is one of the heaviest molecular candidates for effective laser cooling, and as ...
Laser cooling molecules to the ultracold regime is the prerequisite for many novel science and techn...
The observation of an electron electric dipole moment (eEDM) larger than the value allowed by the St...
We theoretically investigate the laser cooling of fermionic barium monofluoride (137BaF) molecules, ...
Heavy diatomic molecules are currently considered to be among the most sensitive systems used in the...