Precision measurements are performed on highly excited vibrational quantum states of molecular hydrogen. The v = 12, J = 0 - 3 rovibrational levels of H<inf>2</inf> (X 1 Σ g +), lying only 2000 cm-1 below the first dissociation limit, were populated by photodissociation of H<inf>2</inf>S and their level energies were accurately determined by two-photon Doppler-free spectroscopy. A comparison between the experimental results on v = 12 level energies with the best ab initio calculations shows a good agreement, where the present experimental accuracy of 3.5 × 10-3 cm-1 is more precise than theory, hence providing a gateway to further test theoretical advances in this benchmark quantum system
Quantum electrodynamic effects have been systematically tested in the progression of rotational quan...
Rovibrational quantum states in the X1Σg+ electronic ground state of H2 are prepared in the v = 13 v...
Recently a high precision spectroscopic investigation of the EF1 Sigma(+)(g)-X-1 Sigma(+)(g) system ...
Precision measurements are performed on highly excited vibrational quantum states of molecular hydro...
Accurate EF1Σg+-X1Σg+ transition energies in molecular hydrogen were determined for transitions orig...
Accurate EF1Σ+ g - X1Σ+ g transition energies in molecular hydrogen were determined for transitions ...
Author Institution: Department of Physics and Astronomy, and LaserLaB, VU University, De Boelelaan 1...
The hydrogen atom is an important testing ground for fundamental physical theory, because it is the ...
Author Institution: Physical Chemistry LaboratoryThe excited $^{1}\Sigma_{g}^{+}$ states of the $H_{...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
Hydrogen molecules plays an important role in research of fundamental physics as the subject of this...
Molecular hydrogen and its isotopic and ionic species are benchmark systems for testing quantum chem...
Highly excited rovibrational states of H$_2$ in the X $^{1}\Sigma_{g}^{+}$ electronic ground state a...
$^{1}$ P. Quadrelli, K. Dressler, and L. Wolniewicz. J. Chem. Phys. (in press).Author Institution: P...
Quantum electrodynamic effects have been systematically tested in the progression of rotational quan...
Rovibrational quantum states in the X1Σg+ electronic ground state of H2 are prepared in the v = 13 v...
Recently a high precision spectroscopic investigation of the EF1 Sigma(+)(g)-X-1 Sigma(+)(g) system ...
Precision measurements are performed on highly excited vibrational quantum states of molecular hydro...
Accurate EF1Σg+-X1Σg+ transition energies in molecular hydrogen were determined for transitions orig...
Accurate EF1Σ+ g - X1Σ+ g transition energies in molecular hydrogen were determined for transitions ...
Author Institution: Department of Physics and Astronomy, and LaserLaB, VU University, De Boelelaan 1...
The hydrogen atom is an important testing ground for fundamental physical theory, because it is the ...
Author Institution: Physical Chemistry LaboratoryThe excited $^{1}\Sigma_{g}^{+}$ states of the $H_{...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
Hydrogen molecules plays an important role in research of fundamental physics as the subject of this...
Molecular hydrogen and its isotopic and ionic species are benchmark systems for testing quantum chem...
Highly excited rovibrational states of H$_2$ in the X $^{1}\Sigma_{g}^{+}$ electronic ground state a...
$^{1}$ P. Quadrelli, K. Dressler, and L. Wolniewicz. J. Chem. Phys. (in press).Author Institution: P...
Quantum electrodynamic effects have been systematically tested in the progression of rotational quan...
Rovibrational quantum states in the X1Σg+ electronic ground state of H2 are prepared in the v = 13 v...
Recently a high precision spectroscopic investigation of the EF1 Sigma(+)(g)-X-1 Sigma(+)(g) system ...