Search for grain growth towards the center of L1544
arXiv:1707.00005 · doi:10.1051/0004-6361/201630265
Abstract
In dense and cold molecular clouds dust grains are surrounded by thick icy mantles. It is however not clear if dust growth and coagulation take place before the switch-on of a protostar. This is an important issue, as the presence of large grains may affect the chemical structure of dense cloud cores, including the dynamically important ionization fraction, and the future evolution of solids in protoplanetary disks. To study this further, we focus on L1544, one of the most centrally concentrated pre-stellar cores on the verge of star formation, and with a well-known physical structure. We observed L1544 at 1.2 and 2 mm using NIKA, a new receiver at the IRAM 30 m telescope, and we used data from the Herschel Space Observatory archive. We find no evidence of grain growth towards the center of L1544 at the available angular resolution. Therefore, we conclude that single dish observations do not allow us to investigate grain growth toward the pre-stellar core L1544 and high sensitivity interferometer observations are needed. We predict that dust grains can grow to 200 m in size toward the central ~300 au of L1544. This will imply a dust opacity change by a factor of ~2.5 at 1.2 mm, which can be detected using the Atacama Large Millimeter and submillimeter Array (ALMA) at different wavelengths and with an angular resolution of 2".
12 pages, 14 figures. Accepted for publication in A&A
References in corpus (11)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Closed-form expressions for particle relative velocities induced by turbulence
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- Observing the gas temperature drop in the high-density nucleus of L 1544
- Large-scale filaments associated with Milky Way spiral arms
- The dynamics of collapsing cores and star formation
- Chemical differentiation in a prestellar core traces non-uniform illumination
- Pressure distribution of the high-redshift cluster of galaxies CL J1226.9+3332 with NIKA
- Evidence for Large Grains in the Star-forming Filament OMC-2/3
- A common column density threshold for scattering at 3.6 mum and water-ice in molecular clouds
Cited by in corpus (8)
- Low dust emissivities and radial variations in the envelopes of Class 0 protostars: a signature of early grain growth?
- FRagmentation and Evolution of dense cores Judged by ALMA (FREJA). I (Overview). Inner 1000 au structures of prestellar/protostellar cores in Taurus
- The cosmic-ray ionisation rate in the pre-stellar core L1544
- Dust opacity variations in the pre-stellar core L1544
- Revealing the dust grain size in the inner envelope of the Class I protostar Per-emb-50
- Methanol Mapping in Cold Cores: Testing Model Predictions
- A 3D physico-chemical model of a pre-stellar core. I. Environmental and structural impact on the distribution of CHOH and -CH
- Linking the dust and chemical evolution: Taurus and Perseus -- New collisional rates for HCN, HNC, and their C, N, and H isotopologues