Evidence for disc regulation in NGC 2264

In the pre-main-sequence stage, star-disc interactions have been shown to remove stellar angular momentum and regulate the rotation periods of stars with M2 and earlier spectral types. Whether disc regulation also extends to stars with later spectral types still remains a matter of debate. Here, we present a star-disc interaction study in a sample of over 180 stars with spectral types M3 and later (corresponding to stellar masses <=0.3M_{sun}) in young stellar cluster NGC 2264. Combining rotation periods from the literature, new and literature spectral types, and newly presented deep Spitzer observations, we show that stars with masses below 0.3M{sun}_ with discs also rotate slower than stars without a disc in the same mass regime. Our results demonstrate that disc regulation still operates in these low-mass stars, although the efficiency of this process might be lower than in higher mass objects. We confirm that stars with spectral types earlier and later than M2 have distinct period distributions and that stars with spectral types M5 and later rotate even faster M3 and M4-type stars.

Cone search capability for table J/MNRAS/487/2937/table1 (Periods, photometry and spectral types for NGC 2264 members)

Cone search capability for table J/MNRAS/487/2937/tablea1 (Spectral types, H{alpha} and CaII presences in field stars)

Identifier
Source https://dc.g-vo.org/rr/q/lp/custom/CDS.VizieR/J/MNRAS/487/2937
Related Identifier https://cdsarc.cds.unistra.fr/viz-bin/cat/J/MNRAS/487/2937
Related Identifier http://vizier.cds.unistra.fr/viz-bin/VizieR-2?-source=J/MNRAS/487/2937
Metadata Access http://dc.g-vo.org/rr/q/pmh/pubreg.xml?verb=GetRecord&metadataPrefix=oai_b2find&identifier=ivo://CDS.VizieR/J/MNRAS/487/2937
Provenance
Creator Orcajo S.; Cieza L.A.; Gamen R.; Peterson D.
Publisher CDS
Publication Year 2023
Rights https://cds.unistra.fr/vizier-org/licences_vizier.html
OpenAccess true
Contact CDS support team <cds-question(at)unistra.fr>
Representation
Resource Type Dataset; AstroObjects
Discipline Astrophysics and Astronomy; Natural Sciences; Observational Astronomy; Physics; Stellar Astronomy