International audienceWe present a detailed study of how the star formation rate (SFR) relates to the interstellar medium (ISM) of M31 at similar to 140 pc scales. The SFR is calculated using the far-ultraviolet and 24 mu m emission, corrected for the old stellar population in M31. We find a global value for the SFR of 0.25(-0.04)(+0.06) M-circle dot yr(-1) and compare this with the SFR found using the total far-infrared luminosity. There is general agreement in regions where young stars dominate the dust heating. Atomic hydrogen (H I) and molecular gas (traced by carbon monoxide, CO) or the dust mass is used to trace the total gas in the ISM. We show that the global surface densities of SFR and gas mass place M31 among a set of low-SFR gal...
International audienceWe compare atomic gas, molecular gas, and the recent star formation rate (SFR)...
We present a high spatial resolution study, on scales of ∼100 pc, of the relationship between star f...
International audienceWe compare atomic gas, molecular gas, and the recent star formation rate (SFR)...
International audienceWe present a detailed study of how the star formation rate (SFR) relates to th...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We calibrate commonly used star formation rate (SFR) prescriptions using observations in five kilopa...
We calibrate commonly used star formation rate (SFR) prescriptions using observations in five kilopa...
We calibrate commonly used star formation rate (SFR) prescriptions using observations in five kilopa...
We measure empirical relationships between the local star formation rate (SFR) and properties of the...
We use hierarchical Bayesian regression analysis to investigate star formation laws in the Andromeda...
We measure the star formation efficiency (SFE), the star formation rate (SFR) per unit of gas, in 23...
International audienceWe compare atomic gas, molecular gas, and the recent star formation rate (SFR)...
We present a high spatial resolution study, on scales of ∼100 pc, of the relationship between star f...
International audienceWe compare atomic gas, molecular gas, and the recent star formation rate (SFR)...
International audienceWe present a detailed study of how the star formation rate (SFR) relates to th...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We present a detailed study of how the star formation rate (SFR) relates to the interstellar medium ...
We calibrate commonly used star formation rate (SFR) prescriptions using observations in five kilopa...
We calibrate commonly used star formation rate (SFR) prescriptions using observations in five kilopa...
We calibrate commonly used star formation rate (SFR) prescriptions using observations in five kilopa...
We measure empirical relationships between the local star formation rate (SFR) and properties of the...
We use hierarchical Bayesian regression analysis to investigate star formation laws in the Andromeda...
We measure the star formation efficiency (SFE), the star formation rate (SFR) per unit of gas, in 23...
International audienceWe compare atomic gas, molecular gas, and the recent star formation rate (SFR)...
We present a high spatial resolution study, on scales of ∼100 pc, of the relationship between star f...
International audienceWe compare atomic gas, molecular gas, and the recent star formation rate (SFR)...