The Bolocam Galactic Plane Survey. XIV. Physical Properties of Massive Starless and Star Forming Clumps
Brian E Svoboda, Yancy L Shirley, Cara Battersby, Erik W Rosolowsky,, Adam G Ginsburg, Timothy P Ellsworth-Bowers, Michele R Pestalozzi, Miranda K, Dunham, Neal J Evans II, John Bally, Jason Glenn

TL;DR
This study analyzes 4683 molecular clouds from the Bolocam Galactic Plane Survey, identifying a large sample of starless and star-forming clumps, and investigates their physical properties, evolution, and lifetimes using multi-wavelength diagnostics and ammonia temperature data.
Contribution
It provides the largest and most robust sample of starless clump candidates from a blind survey, and offers new insights into their physical properties, mass growth, and phase lifetimes.
Findings
Starless clumps are marginally sub-virial and mostly gravitationally bound.
Clump mass increases from starless to protostellar stages by 170-370 M$_\odot$.
Massive starless clumps have phase-lifetimes longer than their free-fall times.
Abstract
We sort molecular clouds between from the Bolocam Galactic Plane Survey based on observational diagnostics of star formation activity: compact sources, mid-IR color-selected YSOs, and masers, and UCHII regions. We also present a combined -derived gas kinetic temperature and maser catalog for clumps from our own GBT 100m observations and from the literature. We identify a subsample of () starless clump candidates, the largest and most robust sample identified from a blind survey to date. Distributions of flux density, flux concentration, solid angle, kinetic temperature, column density, radius, and mass show strong ( dex) progressions when sorted by star formation indicator. The median starless clump candidate is marginally sub-virial () with…
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