The dust temperature distribution in prestellar cores
arXiv:astro-ph/0107055 · doi:10.1051/0004-6361:20010778
Abstract
We have computed the dust temperature distribution to be expected in a pre-protostellar core in the phase prior to the onset of gravitational instability. We have done this in the approximation that the heating of the dust grains is solely due to the attenuated external radiation field and that the core is optically thin to its own radiation. This permits us to consider non spherically symmetric geometries. We predict the intensity distributions of our model cores at millimeter and sub-millimeter wavelengths and compare with observations of the well studied object L1544. We have also developed an analytical approximation for the temperature at the center of spherically symmetric cores and we compare this with the numerical calculations. Our results show (in agreement with Evans et al. 2001) that the temperatures in the nuclei of cores of high visual extinction (> 30 magnitudes) are reduced to values of below ~8 K or roughly half of the surface temperature. This has the consequence that maps at wavelengths shortward of 1.3 mm see predominantly the low density exterior of pre-protostellar cores. It is extremely difficult to deduce the true density distribution from such maps alone. We have computed the intensity distribution expected on the basis of the models of Ciolek & Basu (2000) and compared with the observations of L1544. The agreement is good with a preference for higher inclinations (37 degrees instead of 16) than that adopted by Ciolek & Basu (2000). We find that a simple extension of the analytic approximation allows a reasonably accurate calculation of the dust temperature as a function of radius in cores with density distributions approximating those expected for Bonnor-Ebert spheres and suggest that this may be a useful tool for future calculations of the gas temperature in such cores.
14 latex pages, 10 ps figures, A&A accepted
References in corpus (1)
Cited by in corpus (136)
- The James Webb Space Telescope
- Cold Dark Clouds: The Initial Conditions for Star Formation
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Dense Cores in Dark Clouds. XIV. N2H+(1-0) maps of dense cloud cores
- Systematic Molecular Differentiation in Starless Cores
- Probing the evolutionary status of starless cores through N2H+ and N2D+ observations
- Molecular ions in L1544. II. The ionization degree
- Tracing the Mass during Low-Mass Star Formation. II. Modelling the Submillimeter Emission from Pre-Protostellar Cores
- Water, O2 and Ice in Molecular Clouds
- N2H+ and C18O Depletion in a Cold Dark Cloud
- Physical structure and CO abundance of low-mass protostellar envelopes
- Observing the gas temperature drop in the high-density nucleus of L 1544
- The stellar mass spectrum from non-isothermal gravoturbulent fragmentation
- On the Formation of CO2 and Other Interstellar Ices
- SCUBA Polarization Measurements of the Magnetic Field Strengths in the L183, L1544, and L43 Prestellar Cores
- The Effect of Line of Sight Temperature Variation and Noise on Dust Continuum Observations
- The initial conditions of isolated star formation - VI. SCUBA mapping of prestellar cores
- Molecular Evolution in Collapsing Prestellar Cores III: Contraction of A Bonnor-Ebert Sphere
- Evolution of Chemistry and Molecular Line Profile during Protostellar Collapse
- Molecular ions in L1544. I. Kinematics
- The Degree of CO Depletion in Pre-stellar Cores
- The earliest phases of star formation - A Herschel key project. The thermal structure of low-mass molecular cloud cores
- Survey of ortho-H2D+(1_{1,0}-1_{1,1}) in dense cloud cores
- The structure and stability of molecular cloud cores in external radiation fields
- The Different Structures of the Two Classes of Starless Cores
- Gas phase Elemental abundances in Molecular cloudS (GEMS) I. The prototypical dark cloud TMC 1
- The statistical properties of stars and their dependence on metallicity
- Observations of L1521F: a highly evolved starless core
- Chemistry and Dynamics in Pre-Protostellar Cores
- The Earliest Phases of Star formation observed with Herschel (EPoS): The dust temperature and density distributions of B68
- The complex chemistry of hot cores in Sagittarius B2(N): Influence of cosmic-ray ionization and thermal history
- Modeling the Physical Structure of the Low Density Pre-protostellar Core Lynds 1498
- The Distribution of Ortho-H_2D+(1_1,0 - 1_1,1) in L1544: Tracing the Deuteration Factory in Prestellar Cores
- Nitrogen superfractionation in dense cloud cores
- The Thermal Structure of Gas in Pre-Stellar Cores: A Case Study of Barnard 68
- Dust emissivity in the Submm/Mm: SCUBA and SIMBA observations of Barnard 68
- Deuterated molecules as a probe of ionization fraction in dense interstellar clouds
- Quiescent Dense Gas in Protostellar Clusters: the Ophiuchus A Core
- Protostellar Collapse Induced by Compression
- Radiative Transfer and Starless Cores
- Monte Carlo Radiative Transfer in Embedded Prestellar Cores
- The Ionization Fraction of Barnard 68: Implications for Star and Planet Formation
- Parameterizing the interstellar dust temperature
- Modelling the dust emission from dense interstellar clouds: disentangling the effects of radiative transfer and dust properties
- Monte Carlo simulations of H2 formation on stochastically heated grains
- Dark cloud cores and gravitational decoupling from turbulent flows
- The G11.11-0.12 Infrared-Dark Cloud: Anomalous Dust and a Non-Magnetic Isothermal Model
- Deep Near-Infrared Observations of L1014: Revealing the nature of the core and its embedded source
- Centrally Condensed Collapse of Starless Cores
- Massive Quiescent Cores in Orion. I. Temperature Structure
- TMC-1C: an accreting starless core
- The Intrinsic Shapes of Molecular Cloud Fragments over a Range of Length Scales
- A Coupled Dynamical and Chemical Model of Starless Cores of Magnetized Molecular Clouds: I. Formulation and Initial Results
- Deuteration of ammonia in the starless core Ophiuchus/H-MM1
- Oscillations of starless cores
- Sensitive Limits on the Water Abundance in Cold Low Mass Molecular Cores
- Can we trace very cold dust from its emission alone ?
- Density and Temperature Structure of TMC-1C from 450 and 850 micron Maps
- Formation and Collapse of Nonaxisymmetric Protostellar Cores in Planar Magnetic Interstellar Clouds: Formulation of the Problem and Linear Analysis
- Gas and dust temperature in pre-stellar cores revisited: New limits on cosmic-ray ionization rate
- 3D Continuum radiative transfer in complex dust configurations around young stellar objects and active nuclei II. 3D Structure of the dense molecular cloud core Rho Oph D
- A low-mass protostar's disk-envelope interface: disk-shadowing evidence from ALMA DCO+ observations of VLA1623
- The depletion of NO in pre-protostellar cores
- Dust opacity variations in the pre-stellar core L1544
- Combining radiative transfer and diffuse interstellar medium physics to model star formation
- The ratio of N(C18O) and Av in Chamaeleon I and III-B using 2MASS and SEST
- Molecular Emission Line Formation in Prestellar Cores
- On the stability of non-isothermal Bonnor-Ebert spheres
- Abundance of HCN and its C and N isotopologues in L1498
- The Effect of Noise in Dust Emission Maps on the Derivation of Column Density, Temperature and Emissivity Spectral Index
- How to identify the youngest protostars
- Identification of prestellar cores in high-mass star forming clumps via observations with ALMA
- Detection of 6 K gas in Ophiuchus D
- The kinetic temperature of Barnard 68
- Monte Carlo radiative transfer in molecular cloud cores
- Abundances of Molecular Species in Barnard 68
- Formation of proto-clusters and star formation within clusters: apparent universality of the initial mass function ?
- Monte Carlo radiative transfer in SPH density fields
- Polarized dust emission of magnetized molecular cloud cores
- How chemistry influences cloud structure, star formation, and the IMF
- Radiative transfer models of non-spherical prestellar cores
- Ray-tracing for complex astrophysical high-opacity structures
- Beyond the pseudo-time-dependent approach: chemical models of dense core precursors
- Earliest phases of star formation (EPoS): Dust temperature distributions in isolated starless cores
- L1506: a prestellar core in the making
- Surface chemistry in photodissociation regions
- The Gas Temperature of Starless Cores in Perseus
- Transition from Coherent Cores to Surrounding Cloud in L1688
- The dynamical influence of cooling in the envelope of prestellar and protostellar cores
- BIMA N2H+ 1-0 mapping observations of L183 -- fragmentation and spin-up in a collapsing, magnetized, rotating, pre-stellar core
- ISO far infrared observations of the high latitude cloud L1642. II. Correlated variations of far-infrared emissivity and temperature of "classical large" dust particles
- Modeling CO, CO and HO ice abundances in the envelopes of young stellar objects in the Magellanic Clouds
- Large-Scale CO Maps of the Lupus Molecular Cloud Complex
- A 3D physico-chemical model of a pre-stellar core. I. Environmental and structural impact on the distribution of CHOH and -CH
- Prestellar core modeling in the presence of a filament - The dense heart of L1689B
- The statistical properties of stars at redshift, z=5, compared with the present epoch
- Mid-J CO shock tracing observations of infrared dark clouds II Low-J CO constraints on excitation, depletion, and kinematics
- Mapping the prestellar core Ophiuchus D (L1696A) in ammonia
- Submillimeter Studies of Prestellar Cores and Protostars: Probing the Initial Conditions for Protostellar Collapse
- Inner Structure of Starless Core L694--2 Derived from Millimeter-Wave Interferometry
- Chemistry and dynamics of the prestellar core L1544
- The Evolution of Cloud Cores and the Formation of Stars
- The Earliest Phases of Star formation (EPoS): Temperature, density, and kinematic structure of the star-forming core CB 17
- Ice mantles on dust grains: dramatic variation of thickness with grain size
- Astrochemical model to study the abundances of branched carbon-chain molecules in a hot molecular core with realistic binding energies
- The statistical properties of protostellar discs and their dependence on metallicity
- Kinematic and Thermal Structure at the onset of high-mass star formation
- Variation of the low-mass end of the stellar initial mass function with redshift and metallicity
- Molecular Hydrogen Formation During Dense Interstellar Cloud Collapse
- ALMA-IMF XVI: Mass-averaged temperature of cores and protostellar luminosities in the ALMA-IMF protoclusters
- On the stability of non-isothermal Bonnor-Ebert spheres. II. The effect of gas temperature on the stability
- 3D Radiative Transfer Modelling and Virial Analysis of Starless Cores in the B10 Region of the Taurus Molecular Cloud
- The Role of Non-ionizing Radiation Pressure in Star Formation: The Stability of Cores and Filaments
- On the stability of nonisothermal Bonnor-Ebert spheres. III. The role of chemistry in core stabilization
- Will ALMA Reveal the True Core Mass Function of Protoclusters?
- Non-Ideal Magnetohydrodynamic Simulations of the Two-Stage Fragmentation Model for Cluster Formation
- The Green Bank Ammonia Survey: Unveiling the Dynamics of the Barnard 59 star-forming Clump
- Simulated observations of star formation regions: infrared evolution of globally collapsing clouds
- On the star-forming ability of Molecular Clouds
- Do we need to know the temperature in prestellar cores?
- On the internal dynamics of starless cores: stability of starless cores with internal motions and collapse dynamics
- Dynamical timescale of precollapse evolution inferred from chemical distribution in the Taurus Molecular Cloud-1 (TMC-1) filament
- Effect of stochastic grain heating on cold dense clouds chemistry
- First map of DH emission revealing the true centre of a prestellar core: further insights into deuterium chemistry
- Detectability of deuterated water in prestellar cores
- The HP2 Survey - IV. The Pipe nebula: Effective dust temperatures in dense cores
- Dust properties of the dark cloud IC5146 - Submillimeter and NIR imaging
- The effect of non-isothermality on the gravitational collapse of spherical clouds and the evolution of protostellar accretion
- Probing episodic accretion with chemistry: CALYPSO observations of IRAM 04191+1522. Results from the CALYPSO IRAM-PdBI survey
- Mass estimates for very cold (< 8 K) gas in molecular cloud cores
- Radiative Transfer in Prestellar Cores: A Monte Carlo Approach
- Understanding the IMF
- Metallic species in interstellar medium: Astrochemical modeling
- Impact of ice growth on the physical and chemical properties of dense cloud cores
- Observational characteristics of dense cores with deeply embedded young protostars
- Hunting pre-stellar cores with APEX: overview