most citedAn uncertainty principle for star formation -- V. The influence of dust extinction on star formation rate tracer lifetimes and the inferred molecular cloud lifecycle

8 citations · 8 across the 1 of their papers we have counts for

collaborators

4 papers

astro-ph.GA20208 cited

An uncertainty principle for star formation -- V. The influence of dust extinction on star formation rate tracer lifetimes and the inferred molecular cloud lifecycle

Daniel T. Haydon, Yusuke Fujimoto, Mélanie Chevance +3

Recent observational studies aiming to quantify the molecular cloud lifecycle require the use of known 'reference time-scales' to turn the relative durations of different phases of…

astro-ph.GA2018

An uncertainty principle for star formation -- III. The characteristic emission time-scales of star formation rate tracers

Daniel T. Haydon, J. M. Diederik Kruijssen, Mélanie Chevance +4

We recently presented a new statistical method to constrain the physics of star formation and feedback on the cloud scale by reconstructing the underlying evolutionary timeline. Ho…

astro-ph.GA2018

On the physical mechanisms governing the cloud lifecycle in the Central Molecular Zone of the Milky Way

S. M. R. Jeffreson, J. M. D. Kruijssen, M. R. Krumholz +1

We apply an analytic theory for environmentally-dependent molecular cloud lifetimes to the Central Molecular Zone of the Milky Way. Within this theory, the cloud lifetime in the Ga…

astro-ph.GA2018

An uncertainty principle for star formation - II. A new method for characterising the cloud-scale physics of star formation and feedback across cosmic history

J. M. Diederik Kruijssen, Andreas Schruba, Alexander P. S. Hygate +3

The cloud-scale physics of star formation and feedback represent the main uncertainty in galaxy formation studies. Progress is hampered by the limited empirical constraints outside…