Rotation-disk connection for very low mass and substellar objects in the Orion Nebula Cluster
arXiv:1001.5141 · doi:10.1051/0004-6361/200913494
Abstract
Angular momentum loss requires magnetic interaction between the forming star and both the circumstellar disk and the magnetically driven outflows. In order to test these predictions many authors have investigated a rotation-disk connection in pre-main sequence objects with masses larger than about 0.4Msun. For brown dwarfs this connection was not investigated as yet because there are very few samples available. We aim to extend this investigation well down into the substellar regime for our large sample of BDs in the Orion Nebula Cluster, for which we have recently measured rotational periods. In order to investigate a rotation-disk correlation, we derived near-infrared (NIR) excesses for a sample of 732 periodic variables in the Orion Nebula Cluster with masses ranging between 1.5-0.02 Msun and whose IJHK colors are available. Circumstellar NIR excesses were derived from the Delta[I-K] index. We performed our analysis in three mass bins.We found a rotation-disk correlation in the high and intermediate mass regime, in which objects with NIR excess tend to rotate slower than objects without NIR excess. Interestingly, we found no correlation in the substellar regime. A tight correlation between the peak-to-peak (ptp) amplitude of the rotational modulation and the NIR excess was found however for all objects with available ptp values. We discuss possible scenarios which may explain the lack of rotation-disk connection in the substellar mass regime. One possible reason could be the strong dependence of the mass accretion rate on stellar mass in the investigated mass range.
12 pages, 7 figures, accepted for publication "Astronomy and Astrophysics"
References in corpus (10)
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- Which jet launching mechanism(s) in TTauri stars?
- Star and protoplanetary disk properties in Orion's suburbs
- Why Do T Tauri Disks Accrete?
- High-Resolution Spectroscopy in Tr37: Gas Accretion Evolution in Evolved Dusty Disks
- Rotation and accretion of very low mass objects in the SigmaOri cluster
- A Correlation Between Pre-Main Sequence Stellar Rotation Rates and IRAC Excesses in Orion
- Rotational studies in the Orion Nebula Cluster: from solar mass stars to brown dwarfs
- Evidence for early disk-locking among low-mass members of the Orion Nebula Cluster
- The rotational evolution of young low mass stars
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- Investigating the rotational evolution of very low-mass stars and brown dwarfs in young clusters using Monte Carlo simulations
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