Baryonic feedback is expected to play a key role in regulating the star formation of low-mass galaxies by producing galaxy-scale winds associated with mass-loading factors of β∼1- 50. We test this prediction using a sample of 19 nearby systems with stellar masses of 107 < M∗/M· < 1010, mostly lying above the main sequence of star-forming galaxies. We used MUSE at VLT optical integral field spectroscopy to study the warm ionised gas kinematics of these galaxies via a detailed modelling of their Hα emission line. The ionised gas is characterised by irregular velocity fields, indicating the presence of non-circular motions of a few tens of km s-1 within galaxy discs, but with intrinsic velocity dispersion of 40- 60 km s-1 that are only m...
Many phenomenologically successful cosmological simulations employ kinetic winds to model galactic o...
We study galaxy superwinds driven in major mergers, using pc-scale resolution simulations with detai...
The observed stellar mass function (SMF) is very different to the halo mass function predicted by Λ ...
Baryonic feedback is expected to play a key role in regulating the star formation of low-mass galaxi...
Feedback from massive stars is believed to play a critical role in driving galactic super‐winds that...
We present an analysis of the galaxy-scale gaseous outflows from the Feedback in Realistic Environme...
We examine the effects of stellar feedback and bursty star formation on low-mass galaxies (M_(star) ...
We show that a global relation between baryonic mass and virial velocity can be constructed from the...
Feedback to the interstellar medium (ISM) from ionising radiation, stellar winds and supernovae is c...
We examine the scalings of galactic outflows with halo mass across a suite of 20 high-resolution cos...
We use a disc galaxy evolution model to investigate the impact of mass outflows (a.k.a. feedback) on...
We present a series of high-resolution cosmological simulations of galaxy formation to z = 0, spanni...
Recent observations have revealed that starburst galaxies can drive molecular gas outflows through s...
Recent zoom-in cosmological simulations have shown that stellar feedback can flatten the inner densi...
The thermal Sunyaev–Zel'dovich (SZ) effect and soft X-ray emission are routinely observed around mas...
Many phenomenologically successful cosmological simulations employ kinetic winds to model galactic o...
We study galaxy superwinds driven in major mergers, using pc-scale resolution simulations with detai...
The observed stellar mass function (SMF) is very different to the halo mass function predicted by Λ ...
Baryonic feedback is expected to play a key role in regulating the star formation of low-mass galaxi...
Feedback from massive stars is believed to play a critical role in driving galactic super‐winds that...
We present an analysis of the galaxy-scale gaseous outflows from the Feedback in Realistic Environme...
We examine the effects of stellar feedback and bursty star formation on low-mass galaxies (M_(star) ...
We show that a global relation between baryonic mass and virial velocity can be constructed from the...
Feedback to the interstellar medium (ISM) from ionising radiation, stellar winds and supernovae is c...
We examine the scalings of galactic outflows with halo mass across a suite of 20 high-resolution cos...
We use a disc galaxy evolution model to investigate the impact of mass outflows (a.k.a. feedback) on...
We present a series of high-resolution cosmological simulations of galaxy formation to z = 0, spanni...
Recent observations have revealed that starburst galaxies can drive molecular gas outflows through s...
Recent zoom-in cosmological simulations have shown that stellar feedback can flatten the inner densi...
The thermal Sunyaev–Zel'dovich (SZ) effect and soft X-ray emission are routinely observed around mas...
Many phenomenologically successful cosmological simulations employ kinetic winds to model galactic o...
We study galaxy superwinds driven in major mergers, using pc-scale resolution simulations with detai...
The observed stellar mass function (SMF) is very different to the halo mass function predicted by Λ ...