The Protostellar Luminosity Function
arXiv:1105.0671 · doi:10.1088/0004-637X/736/1/53
Abstract
The protostellar luminosity function (PLF) is the present-day luminosity function of the protostars in a region of star formation. It is determined using the protostellar mass function (PMF) in combination with a stellar evolutionary model that provides the luminosity as a function of instantaneous and final stellar mass. As in McKee & Offner (2010), we consider three main accretion models: the Isothermal Sphere model, the Turbulent Core model, and an approximation of the Competitive Accretion model. We also consider the effect of an accretion rate that tapers off linearly in time and an accelerating star formation rate. For each model, we characterize the luminosity distribution using the mean, median, maximum, ratio of the median to the mean, standard deviation of the logarithm of the luminosity, and the fraction of very low luminosity objects. We compare the models with bolometric luminosities observed in local star forming regions and find that models with an approximately constant accretion time, such as the Turbulent Core and Competitive Accretion models, appear to agree better with observation than those with a constant accretion rate, such as the Isothermal Sphere model. We show that observations of the mean protostellar luminosity in these nearby regions of low-mass star formation suggest a mean star formation time of 0.30.1 Myr. Such a timescale, together with some accretion that occurs non-radiatively and some that occurs in high-accretion, episodic bursts, resolves the classical "luminosity problem" in low-mass star formation, in which observed protostellar luminosities are significantly less than predicted. An accelerating star formation rate is one possible way of reconciling the observed star formation time and mean luminosity.
22 pages, 9 figures, accepted to ApJ
References in corpus (20)
- Theory of Star Formation
- The Star Formation Rate and Gas Surface Density Relation in the Milky Way: Implications for Extragalactic Studies
- The properties of brown dwarfs and low-mass hydrogen-burning stars formed by disc fragmentation
- The Mass Distribution and Lifetime of Prestellar Cores in Perseus, Serpens, and Ophiuchus
- The Effects of Radiative Transfer on Low-Mass Star Formation
- Identifying the Low Luminosity Population of Embedded Protostars in the c2d Observations of Clouds and Cores
- The Importance of Radiative Feedback for the Stellar Initial Mass Function
- The Formation of Low-Mass Binary Star Systems Via Turbulent Fragmentation
- Effect of episodic accretion on the structure and the lithium depletion of low-mass stars and planet-hosting stars
- A Near-Infrared Spectroscopic Survey of Class I Protostars
- Characterizing the nature of embedded young stellar objects through silicate, ice and millimeter observations
- The nature of the Class I population in Ophiuchus as revealed through gas and dust mapping
- Evidence for an FU Orionis-like Outburst from a Classical T Tauri Star
- Outflows and mass accretion in collapsing dense cores with misaligned rotation axis and magnetic field
- PTF10nvg: An Outbursting Class I Protostar in the Pelican/North American Nebula
- Physical and radiative properties of the first core accretion shock
- High Resolution Near-Infrared Spectroscopy of FUors and FUor-like stars
- A Schmidt-Kennicutt law for star formation in the Milky Way disk
- The Kinematics of Molecular Cloud Cores in the Presence of Driven and Decaying Turbulence: Comparisons with Observations
- The Interplay of Turbulence & Magnetic Fields in Star-Forming Regions: Simulations and Observations
Cited by in corpus (92)
- Stellar, brown dwarf and multiple star properties from a radiation hydrodynamical simulation of star cluster formation
- Young Stellar Objects in the Gould Belt
- The VLA Nascent Disk and Multiplicity Survey of Perseus Protostars (VANDAM). II. Multiplicity of Protostars in the Perseus Molecular Cloud
- The Close Binary Fraction of Solar-type Stars is Strongly Anti-correlated with Metallicity
- A Triple Protostar System Formed via Fragmentation of a Gravitationally Unstable Disk
- ATLASGAL --- towards a complete sample of massive star forming clumps
- The ATLASGAL survey: a catalog of dust condensations in the Galactic plane
- The Herschel Orion Protostar Survey: Spectral Energy Distributions and Fits Using a Grid of Protostellar Models
- Resolving the Luminosity Problem in Low-Mass Star Formation
- A Herschel and APEX Census of the Reddest Sources in Orion: Searching for the Youngest Protostars
- The dynamics and outcome of star formation with jets, radiation, winds, and supernovae in concert
- Evolution of Protostellar Outflow around Low-mass Protostar
- The Dawes Review 8: Measuring the Stellar Initial Mass Function
- The Physics of Star Cluster Formation and Evolution
- Star Cluster Formation in Turbulent, Magnetized Dense Clumps with Radiative and Outflow Feedback
- Continuum Variability of Deeply Embedded Protostars as a Probe of Envelope Structure
- Accretion Outbursts in Self-gravitating Protoplanetary Disks
- Luminosity Functions of Spitzer Identified Protostars in Nine Nearby Molecular Clouds
- Infall-Driven Protostellar Accretion and the Solution to the Luminosity Problem
- The enigmatic core L1451-mm: a first hydrostatic core? or a hidden VeLLO?
- The Luminosities of Protostars in the Spitzer c2d and Gould Belt Legacy Clouds
- The Mass Budget of Planet Forming Discs: Isolating the Epoch of Planetesimal Formation
- A systematic survey for eruptive young stellar objects using mid-infrared photometry
- Episodic accretion: the interplay of infall and disc instabilities
- Feedback Effects on Low-Mass Star Formation
- The Herschel Orion Protostar Survey: Luminosity and Envelope Evolution
- The Extraordinary Outburst in the Massive Protostellar System NGC6334I-MM1: Emergence of Strong 6.7 GHz Methanol Masers
- On the Origin of Stellar Masses
- Episodic accretion, protostellar radiative feedback, and their role in low-mass star formation
- Misaligned disks induced by infall
- Physical Processes in Star Formation
- How do stars gain their mass? A JCMT/SCUBA-2 Transient Survey of Protostars in Nearby Star Forming Regions
- On column density thresholds and the star formation rate
- Chronology of Episodic Accretion in Protostars -- an ALMA survey of the CO and HO snowlines
- CO2 Ice toward Low-luminosity, Embedded Protostars: Evidence for Episodic Mass Accretion via Chemical History
- The Formation of Stellar Clusters in Magnetized, Filamentary Infrared Dark Clouds
- An ALMA Search for Substructure, Fragmentation, and Hidden Protostars in Starless Cores in Chamaeleon I
- Exploration of Cosmic Ray Acceleration in Protostellar Accretion Shocks and A Model for Ionization Rates in Embedded Protoclusters
- Observing Simulated Protostars with Outflows: How Accurate are Protostellar Properties Inferred from SEDs?
- Constraining the Rate of Protostellar Accretion Outbursts in the Orion Molecular Clouds
- The Dependence of Protostellar Luminosity on Environment in the Cygnus-X Star-Forming Complex
- What Physics Determines the Peak of the IMF? Insights from the Structure of Cores in Radiation-Magnetohydrodynamic Simulations
- The Astrochemical Impact of Cosmic Rays in Protoclusters I: Molecular Cloud Chemistry
- Protostellar accretion traced with chemistry. High resolution C18O and continuum observations towards deeply embedded protostars in Perseus
- Impact of Winds from Intermediate-Mass Stars on Molecular Cloud Structure and Turbulence
- What is the role of stellar radiative feedback in setting the stellar mass spectrum?
- How Starless Are Starless Cores?
- The Rate, Amplitude and Duration of Outbursts from Class 0 Protostars in Orion
- Probing Episodic Accretion in Very Low Luminosity Objects
- Stellar dynamics in gas: The role of gas damping
- Star formation in dense clusters
- Mass and luminosity evolution of young stellar objects
- A Hi-GAL study of the high-mass star-forming region G29.96-0.02
- The G305 star-forming complex: Embedded Massive Star Formation Discovered by Herschel Hi-GAL
- The CDF Archive: Herschel PACS and SPIRE Spectroscopic Data Pipeline and Products for Protostars and Young Stellar Objects
- The VLA/ALMA Nascent Disk and Multiplicity (VANDAM) Survey of Orion Protostars I. Identifying and Characterizing the Protostellar Content of the OMC2-FIR4 and OMC2-FIR3 Regions
- Parameter study for the burst mode of accretion in massive star formation
- The influence of radiative core growth on coronal X-ray emission from pre-main sequence stars
- The accretion history of high-mass stars: An ArTéMiS pilot study of Infrared Dark Clouds
- Extension of HOPS Out to 500 ParSecs (eHOPS). I. Identification and Modeling of Protostars in the Aquila Molecular Clouds
- Testing a New Model of Embedded Protostellar Disks Against Observation: The Majority of Orion Class 0/I Disks Are Likely Warm, Massive, and Gravitationally Unstable
- Kepler-167e as a Probe of the Formation Histories of Cold Giants with Inner Super-Earths
- Protostellar accretion traced with chemistry: Comparing synthetic C18O maps of embedded protostars to real observations
- Protostar mass functions in young clusters
- Impact of Cosmic-Ray Feedback on Accretion and Chemistry in Circumstellar Disks
- A Low-mass Cold and Quiescent Core Population in a Massive Star Protocluster
- Origin of the dense core mass function in contracting filaments
- An updated modular set of synthetic spectral energy distributions for young stellar objects
- The Astrochemical Impact of Cosmic Rays in Protoclusters II: CI-to-H and CO-to-H Conversion Factors
- A Density Dependence for Protostellar Luminosity in Class I Sources: Collaborative Accretion
- The nature of very low luminosity objects (VeLLOs)
- Evolution of Hubble wedges in episodic protostellar outflows
- 3-D SPH simulations of the FUOR flares in the clumpy accretion model
- The dependence of stellar properties on initial cloud density
- Magnetic disk winds in protoplanetary disks: Description of the model and impact on global disk evolution
- The link between infall location, early disc size, and the fraction of self-gravitationally fragmenting discs
- The YSO Population in the Vela-D Molecular Cloud
- 13CO and C18O J=2-1 mapping of the environment of the Class 0 protostellar core SMM 3 in Orion B9
- Constraining the Chemical Signatures and the Outburst Mechanism of the Class 0 Protostar HOPS 383
- Is the mm/submm dust polarization a robust tracer of the magnetic field topology in protostellar envelopes? A model exploration
- Physical conditions for dust grain alignment in Class 0 protostellar cores II. The role of the radiation field in models aligning/disrupting dust grains
- A Model for Protostellar Cluster Luminosities and the Impact on the CO-H Conversion Factor
- Haffner 16: A Young Moving Group in the Making
- Probing episodic accretion with chemistry: CALYPSO observations of IRAM 04191+1522. Results from the CALYPSO IRAM-PdBI survey
- A semi-analytic model for the temporal evolution of the episodic disc-to-star accretion rate during star formation
- Turn up the light: Radiative efficiency of protostars at birth
- Completing the Protostellar Luminosity Function in Cygnus-X with SOFIA/FORCAST Imaging
- Variable protostellar mass accretion rates in cloud cores
- The JCMT Transient Survey: Four Year Summary of Monitoring the Submillimeter Variability of Protostars
- The long-term evolution of stellar activity
- Submillimetre Transient Science in the Next Decade: EAO Submillimetre Futures White Paper Series, 2019
- A framework for modeling the evolution of young stellar objects