2012A&A...546L...1D


Query : 2012A&A...546L...1D

2012A&A...546L...1D - Astronomy and Astrophysics, volume 546, L1-1 (2012/10-1)

Can habitable planets form in clustered environments?

DE JUAN OVELAR M., KRUIJSSEN J.M.D., BRESSERT E., TESTI L., BASTIAN N. and CANOVAS H.

Abstract (from CDS):

We present observational evidence of environmental effects on the formation and evolution of planetary systems. We combine catalogues of resolved protoplanetary discs (PPDs) and young stellar objects in the solar neighbourhood to analyse the PPD size distribution as a function of ambient stellar density. By running Kolmogorov-Smirnov tests between the PPD radii at different densities, we find empirical evidence, at the >97% confidence level, for a change in the PPD radius distribution at ambient stellar densities Σ>103.5pc–2. This coincides with a simple theoretical estimate for the truncation of PPDs or planetary systems by dynamical encounters. If this agreement is causal, the ongoing disruption of PPDs and planetary systems limits the possible existence of planets in the habitable zone, with shorter lifetimes at higher host stellar masses and ambient densities. Therefore, habitable planets are not likely to be present in long-lived stellar clusters, and may have been ejected altogether to form a population of unbound, free-floating planets. We conclude that, while highly suggestive, our results should be verified through other methods. Our simple model shows that truncations should lead to a measurable depletion of the PPD mass function that can be detected with ALMA observations of the densest nearby and young clusters.

Abstract Copyright:

Journal keyword(s): planets and satellites: formation - protoplanetary disks - circumstellar matter - stars: kinematics and dynamics - open clusters and associations: general

Simbad objects: 11

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Number of rows : 11
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 NGC 104 GlC 00 24 05.359 -72 04 53.20     4.09     ~ 3918 0
2 NAME Perseus Cloud SFR 03 35.0 +31 13           ~ 1366 0
3 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4421 0
4 NAME Orion Nebula Cluster OpC 05 35.0 -05 29           ~ 2334 0
5 NGC 3603 OpC 11 15 10.8 -61 15 32           ~ 1068 1
6 Lupus 1 Cld 15 43 02.1 -34 09 06           ~ 286 0
7 Lupus 4 MoC 16 03 12.4 -42 07 43           ~ 152 0
8 Lupus 3 SFR 16 09.6 -39 03           ~ 323 0
9 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3632 1
10 NGC 6397 GlC 17 40 42.09 -53 40 27.6     5.17     ~ 1977 0
11 NAME Serpens Cloud SFR 18 29 49 +01 14.8           ~ 1100 2

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