Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf galaxies in a Lambda cold dark matter Universe, we show how high redshift gas outflows can modify the baryon angular momentum distribution and allow pure disc galaxies to form. We outline how galactic outflows preferentially remove low angular momentum material due a combination of (a) star formation peaking at high redshift in shallow dark matter potentials, an epoch when accreted gas has relatively low angular momentum, (b) the existence of an extended reservoir of high angular momentum gas in the outer disc to provide material for prolonged SF at later times and (c) the tendency for outflows to follow the path of least resistance which is perp...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
We study the formation of disc galaxies in a fully cosmological framework using adaptive mesh refine...
Spiral, fast-rotating galaxies like the Milky Way are the most common type in the Universe. One of t...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 km s−1,...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
We study the formation of disc galaxies in a fully cosmological framework using adaptive mesh refine...
Spiral, fast-rotating galaxies like the Milky Way are the most common type in the Universe. One of t...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Using high resolution, fully cosmological smoothed particle hydrodynamical simulations of dwarf gala...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 km s−1,...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
Within a fully cosmological hydrodynamical simulation, we form a galaxy which rotates at 140 kms-1, ...
We study the formation of disc galaxies in a fully cosmological framework using adaptive mesh refine...
Spiral, fast-rotating galaxies like the Milky Way are the most common type in the Universe. One of t...