During the epoch of first star formation, molecular hydrogen (H-2) generated via associative detachment (AD) of H- and H is believed to have been the main coolant of primordial gas for temperatures below 10(4) kelvin. The uncertainty in the cross section for this reaction has limited our understanding of protogalaxy formation during this epoch and of the characteristic masses and cooling times for the first stars. We report precise energy-resolved measurements of the AD reaction, made with the use of a specially constructed merged-beams apparatus. Our results agreed well with the most recent theoretically calculated cross section, which we then used in cosmological simulations to demonstrate how the reduced AD uncertainty improves constrain...
Abstract: The role of HD cooling in the formation of primordial objects is examined by means of a gr...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
International audienceGalaxy formation depends on a complex interplay between gravitational collapse...
During the epoch of protogalaxy and first star formation, H/sub 2/ is the main coolant of primordial...
Author Institution: Columbia Astrophysics Laboratory, Columbia University, New York, NY 10027, USA; ...
Synopsis We have developed a novel apparatus to study associative detachment of H- and H forming H2....
We have performed the first energy-resolved measurement of the associative detachment (AD) reaction ...
In primordial gas, molecular hydrogen forms primarily through associative detachment of H and H, th...
The cooling of neutral gas of primordial composition, or with very low levels of metal enrichment, d...
In primordial gas, molecular hydrogen forms primarily through associative detachment of H- and H, th...
Context. Population III stars are the first stars in the Universe to form at z = 20–30 out of a pure...
We investigate the impact of an ionising X-ray background on metal-free Population III stars within ...
Cosmic structure originated from minute density perturbations in an almost homogeneous universe. The...
Original article can be found at: http://adsabs.harvard.edu/basic_search.html Copyright Royal Astron...
Experimental uncertainties and resolution Experimental uncertainties The error bars given in Fig. 2 ...
Abstract: The role of HD cooling in the formation of primordial objects is examined by means of a gr...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
International audienceGalaxy formation depends on a complex interplay between gravitational collapse...
During the epoch of protogalaxy and first star formation, H/sub 2/ is the main coolant of primordial...
Author Institution: Columbia Astrophysics Laboratory, Columbia University, New York, NY 10027, USA; ...
Synopsis We have developed a novel apparatus to study associative detachment of H- and H forming H2....
We have performed the first energy-resolved measurement of the associative detachment (AD) reaction ...
In primordial gas, molecular hydrogen forms primarily through associative detachment of H and H, th...
The cooling of neutral gas of primordial composition, or with very low levels of metal enrichment, d...
In primordial gas, molecular hydrogen forms primarily through associative detachment of H- and H, th...
Context. Population III stars are the first stars in the Universe to form at z = 20–30 out of a pure...
We investigate the impact of an ionising X-ray background on metal-free Population III stars within ...
Cosmic structure originated from minute density perturbations in an almost homogeneous universe. The...
Original article can be found at: http://adsabs.harvard.edu/basic_search.html Copyright Royal Astron...
Experimental uncertainties and resolution Experimental uncertainties The error bars given in Fig. 2 ...
Abstract: The role of HD cooling in the formation of primordial objects is examined by means of a gr...
International audienceThe most efficient mechanism of the formation of molecular hydrogen in the cur...
International audienceGalaxy formation depends on a complex interplay between gravitational collapse...