Quantum electrodynamic effects have been systematically tested in the progression of rotational quantum states in the XΣg+1, v=0 vibronic ground state of molecular hydrogen. High-precision Doppler-free spectroscopy of the EFΣg+1-XΣg+1 (0,0) band was performed with 0.005cm⊃-1 accuracy on rotationally hot
Accurate EF1Σ+ g - X1Σ+ g transition energies in molecular hydrogen were determined for transitions ...
We present a parts-per-million test of quantum electrodynamics (QED) in the HD+ molecular hydrogen i...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
Author Institution: Department of Physics and Astronomy, and LaserLaB, VU University, De Boelelaan 1...
Recently a high precision spectroscopic investigation of the EF1Σg+-X1Σg+ system of molecular hydrog...
The hydrogen atom is an important testing ground for fundamental physical theory, because it is the ...
Precision measurements are performed on highly excited vibrational quantum states of molecular hydro...
Abstract: Calculations of QED effects in molecules are tested by precision laser spectroscopy in H2,...
International audienceWe present a parts-per-million test of quantum electrodynamics (QED) in the HD...
Author Institution: Laboratorium fur Physikalische Chemie, ETH Zurich, 8093 Zurich, Switzerland; Lab...
Accurate EF1Σg+-X1Σg+ transition energies in molecular hydrogen were determined for transitions orig...
Author Institution: Faculty of Physics, University of Warsaw; Ho\.za 69, 00-681 Warsaw, Poland; Fac...
Having only three electrons, He$_2^+$ represents a system for which highly accurate emph{ab initio} ...
The hydrogen molecule has become a test ground for quantum electrodynamical calculations in molecule...
Molecular hydrogen and its isotopic and ionic species are benchmark systems for testing quantum chem...
Accurate EF1Σ+ g - X1Σ+ g transition energies in molecular hydrogen were determined for transitions ...
We present a parts-per-million test of quantum electrodynamics (QED) in the HD+ molecular hydrogen i...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
Author Institution: Department of Physics and Astronomy, and LaserLaB, VU University, De Boelelaan 1...
Recently a high precision spectroscopic investigation of the EF1Σg+-X1Σg+ system of molecular hydrog...
The hydrogen atom is an important testing ground for fundamental physical theory, because it is the ...
Precision measurements are performed on highly excited vibrational quantum states of molecular hydro...
Abstract: Calculations of QED effects in molecules are tested by precision laser spectroscopy in H2,...
International audienceWe present a parts-per-million test of quantum electrodynamics (QED) in the HD...
Author Institution: Laboratorium fur Physikalische Chemie, ETH Zurich, 8093 Zurich, Switzerland; Lab...
Accurate EF1Σg+-X1Σg+ transition energies in molecular hydrogen were determined for transitions orig...
Author Institution: Faculty of Physics, University of Warsaw; Ho\.za 69, 00-681 Warsaw, Poland; Fac...
Having only three electrons, He$_2^+$ represents a system for which highly accurate emph{ab initio} ...
The hydrogen molecule has become a test ground for quantum electrodynamical calculations in molecule...
Molecular hydrogen and its isotopic and ionic species are benchmark systems for testing quantum chem...
Accurate EF1Σ+ g - X1Σ+ g transition energies in molecular hydrogen were determined for transitions ...
We present a parts-per-million test of quantum electrodynamics (QED) in the HD+ molecular hydrogen i...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...