The low-mass Initial Mass Function in the Orion Nebula cluster based on HST/NICMOS III imaging
M. Andersen, M. R. Meyer, M. Robberto, L. E. Bergeron, N. Reid

TL;DR
This study uses deep HST/NICMOS imaging to analyze the low-mass star and brown dwarf populations in the Orion Nebula Cluster, revealing a possible mass segregation and variations in the initial mass function.
Contribution
It provides new measurements of the low-mass to brown dwarf ratio across different regions of the ONC using deeper infrared data than previous studies.
Findings
The low-mass to brown dwarf ratio varies with radius in the ONC.
Evidence suggests mass segregation of low-mass objects in the cluster.
The low-mass initial mass function shows potential spatial variations.
Abstract
We present deep HST/NICMOS Camera 3 F110W and F160W imaging of a 26'x33', corresponding to 3.1pcx3.8pc, non-contiguous field towards the Orion Nebula Cluster (ONC). The main aim is to determine the ratio of low--mass stars to brown dwarfs for the cluster as a function of radius out to a radial distance of 1.5pc. The sensitivity of the data outside the nebulous central region is F160W=21.0 mag, significantly deeper than previous studies of the region over a comparable area. We create an extinction limited sample and determine the ratio of low-mass stars (0.08-1Msun) to brown dwarfs (0.02-0.08Msun and 0.03-0.08Msun) for the cluster as a whole and for several annuli. The ratio found for the cluster within a radius of 1.5pc is R(02)=N(0.08-1Msun)/N(0.02-0.08Msun)=1.7+-0.2, and R(03)=N(0.08-1Msun)/N(0.03-0.08Msun)=2.4+-0.2, after correcting for field stars. The ratio for the central…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Spectroscopy and Laser Applications · Astro and Planetary Science
