Many theoretical models of dark energy invoke rolling scaler fields which in turn predict time varying values of the fundamental constants. Establishing the value of the fundamental constants at various times in the universe can probe and test the various dark energy theories. One of the constants that is predicted to vary is the ratio of the electron to proton mass μ. It was established early on that molecular spectra are sensitive to the value of μ and can be used as probes of that value. This article describes the use of the spectrum of molecular hydrogen in high redshift Damped Lyman Alpha systems (DLAs) as a sensitive probe of the time evolution of μ
We propose a new class of bosonic dark matter (DM) detectors based on resonant absorption onto a gas...
Dark energy is one of the mysteries of modern science. It is unlike any known form of matter or ener...
International audienceWe study the physical conditions in damped Lyman alpha systems (DLAs), using a...
The strong electronic absorption systems of the BΣu+1-XΣg+1 Lyman and the CΠu1-XΣg+1 Werner bands ca...
Dark energy is the as yet unidentified mechanism responsible for the accelerated expansion of the un...
In an effort to resolve the discrepancy between two measurements of the fundamental constant μ, the ...
International audienceThe strong electronic absorption systems of the BSigmau+1-XSigmag+1 Lyman and ...
Aims. We probe the physical conditions in high-redshift damped Lyman-α systems (DLAs) using the obse...
International audienceContext. Absorption lines of H2 and HD molecules observed at high redshift in ...
The hydrogen molecule is the smallest neutral chemical entity and a benchmark system of molecular sp...
We have used the Green Bank Telescope (GBT) and Berkeley-Illinois-Maryland Association (BIMA) array ...
Context. Absorption lines of H 2 and HD molecules observed at high redshift in the line of sight tow...
Author Institution: Department of Physics and Astronomy, VU University Amsterdam, De Boelelaan 1081,...
Context. Absorption lines of H2 and HD molecules observed at high redshift in the line of sight towa...
The spectrum of molecular hydrogen can be measured in the laboratory to very high precision using ad...
We propose a new class of bosonic dark matter (DM) detectors based on resonant absorption onto a gas...
Dark energy is one of the mysteries of modern science. It is unlike any known form of matter or ener...
International audienceWe study the physical conditions in damped Lyman alpha systems (DLAs), using a...
The strong electronic absorption systems of the BΣu+1-XΣg+1 Lyman and the CΠu1-XΣg+1 Werner bands ca...
Dark energy is the as yet unidentified mechanism responsible for the accelerated expansion of the un...
In an effort to resolve the discrepancy between two measurements of the fundamental constant μ, the ...
International audienceThe strong electronic absorption systems of the BSigmau+1-XSigmag+1 Lyman and ...
Aims. We probe the physical conditions in high-redshift damped Lyman-α systems (DLAs) using the obse...
International audienceContext. Absorption lines of H2 and HD molecules observed at high redshift in ...
The hydrogen molecule is the smallest neutral chemical entity and a benchmark system of molecular sp...
We have used the Green Bank Telescope (GBT) and Berkeley-Illinois-Maryland Association (BIMA) array ...
Context. Absorption lines of H 2 and HD molecules observed at high redshift in the line of sight tow...
Author Institution: Department of Physics and Astronomy, VU University Amsterdam, De Boelelaan 1081,...
Context. Absorption lines of H2 and HD molecules observed at high redshift in the line of sight towa...
The spectrum of molecular hydrogen can be measured in the laboratory to very high precision using ad...
We propose a new class of bosonic dark matter (DM) detectors based on resonant absorption onto a gas...
Dark energy is one of the mysteries of modern science. It is unlike any known form of matter or ener...
International audienceWe study the physical conditions in damped Lyman alpha systems (DLAs), using a...