We study the effects of HD molecules on thermochemical evolution of the primordial gas behind shock waves, possibly arised in the process of galaxy formation. We find the critical shock velocity when deuterium transforms efficiently into HD molecules which then dominate gas cooling. Above this velocity the shocked gas is able to cool down to the temperature of the cosmic microwave background. Under these conditions the corresponding Jeans mass depends only on redshift and initial density of baryons $M_J \propto \delta_c^{-0.5} (1+z)^{0.5}$. At $z\simgt 45$ HD molecules heat shocked gas, and at larger redshift their contribution to thermal evolution becomes negligible
In massive primordial galaxies, the gas may directly collapse and form a single central massive obje...
Possible detection of signatures of structure formation at the end of the 'dark age' epoch (z~40-20)...
The cooling of neutral gas of primordial composition, or with very low levels of metal enrichment, d...
We report new calculations of the cooling rate of primordial gas by the HD molecule, taking into acc...
The role of HD cooling in the formation of primordial objects is examined by means of a great number...
We find that at redshifts z [greater than or similar to] 10, HD line cooling allows strongly-shocked...
We investigate thermal regime of the baryons behind shock waves arising in the process of virializat...
The thermochemistry of H2 and HD in non-collapsed, non-reionized primordial gas up to the end of th...
Little is known of the mechanism by which H and H2, the principal constituents of the post-re-combin...
Cooling of primordial gas plays a crucial role in the birth of the first structures in our Universe....
It has been shown by Shchekinov & Vasiliev (2006) (SV06) that HD molecules can be an important c...
The collapse of the primordial gas in the density regime similar to 10(8)-10(10) cm(-3) is controlle...
We have performed a cosmological numerical simulation of primordial baryonic gas collapsing onto a 3...
It has been shown by Shchekinov & Vasiliev2006 (SV06) that HD molecules can be an important cooling ...
International audienceNumerical simulations show the formation of self-gravitating primordial disks ...
In massive primordial galaxies, the gas may directly collapse and form a single central massive obje...
Possible detection of signatures of structure formation at the end of the 'dark age' epoch (z~40-20)...
The cooling of neutral gas of primordial composition, or with very low levels of metal enrichment, d...
We report new calculations of the cooling rate of primordial gas by the HD molecule, taking into acc...
The role of HD cooling in the formation of primordial objects is examined by means of a great number...
We find that at redshifts z [greater than or similar to] 10, HD line cooling allows strongly-shocked...
We investigate thermal regime of the baryons behind shock waves arising in the process of virializat...
The thermochemistry of H2 and HD in non-collapsed, non-reionized primordial gas up to the end of th...
Little is known of the mechanism by which H and H2, the principal constituents of the post-re-combin...
Cooling of primordial gas plays a crucial role in the birth of the first structures in our Universe....
It has been shown by Shchekinov & Vasiliev (2006) (SV06) that HD molecules can be an important c...
The collapse of the primordial gas in the density regime similar to 10(8)-10(10) cm(-3) is controlle...
We have performed a cosmological numerical simulation of primordial baryonic gas collapsing onto a 3...
It has been shown by Shchekinov & Vasiliev2006 (SV06) that HD molecules can be an important cooling ...
International audienceNumerical simulations show the formation of self-gravitating primordial disks ...
In massive primordial galaxies, the gas may directly collapse and form a single central massive obje...
Possible detection of signatures of structure formation at the end of the 'dark age' epoch (z~40-20)...
The cooling of neutral gas of primordial composition, or with very low levels of metal enrichment, d...