Towards Precise Ages and Masses of Free Floating Planetary Mass Brown Dwarfs
James Canty, Philip Lucas, Patrick Roche, David Pinfield

TL;DR
This study develops a new spectral index, H2(K), to more accurately determine the ages and masses of free-floating planetary-mass objects in young clusters, addressing degeneracy issues in age estimation.
Contribution
Introduction of the H2(K) index as a gravity-sensitive tool for age and mass estimation of brown dwarfs and planetary-mass objects in young clusters.
Findings
H2(K) index correlates with age and surface gravity.
H2(K) is more sensitive than NaI doublet for very young objects.
Average age of planetary-mass objects in ONC is about 1 Myr.
Abstract
Measurement of the substellar initial mass function (IMF) in very young clusters is hampered by the possibility of the age spread of cluster members. This is particularly serious for candidate planetary mass objects (PMOs), which have a very similar location to older and more massive brown dwarfs on the Hertzsprung-Russell Diagram (HRD). This degeneracy can be lifted by the measurement of gravity-sensitive spectral features. To this end we have obtained medium resolution (R~5000) Near-infrared Integral Field Spectrometer (NIFS) K band spectra of a sample of late M- / early L-type dwarfs. The sample comprises old field dwarfs and very young brown dwarfs in the Taurus association and in the Sigma Orionis cluster. We demonstrate a positive correlation between the strengths of the 2.21micron NaI doublet and the objects' ages. We demonstrate a further correlation between these objects' ages…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astro and Planetary Science · Astronomy and Astrophysical Research
