Star cluster ‘infant mortality’ in the Small Magellanic Cloud (Redivivus)
The early evolution of star clusters in the Small Magellanic Cloud (SMC) has been the subject of significant recent controversy, particularly regarding the importance and length of the earliest, largely mass-independent disruption phase (referred to as ‘infant mortality’). Here, we take a fresh appr...
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Published in | Monthly notices of the Royal Astronomical Society Vol. 383; no. 3; pp. 1000 - 1006 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Oxford, UK
Blackwell Publishing Ltd
01.01.2008
Blackwell Science Oxford University Press |
Subjects | |
Online Access | Get full text |
ISSN | 0035-8711 1365-2966 |
DOI | 10.1111/j.1365-2966.2007.12509.x |
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Abstract | The early evolution of star clusters in the Small Magellanic Cloud (SMC) has been the subject of significant recent controversy, particularly regarding the importance and length of the earliest, largely mass-independent disruption phase (referred to as ‘infant mortality’). Here, we take a fresh approach to the problem, using an independent, homogeneous data set of UBVR imaging observations, from which we obtain the SMC's cluster age and mass distributions in a self-consistent manner. We conclude that the (optically selected) SMC star cluster population has undergone at most ∼30 per cent (1σ) infant mortality between the age range from about (3–10) Myr, to that of approximately (40–160) Myr. We rule out a 90 per cent cluster mortality rate per decade of age (for the full age range up to 109 yr) at a >6σ level. We independently affirm this scenario based on the age distribution of the SMC cluster sample. |
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AbstractList | The early evolution of star clusters in the Small Magellanic Cloud (SMC) has been the subject of significant recent controversy, particularly regarding the importance and length of the earliest, largely mass-independent disruption phase (referred to as 'infant mortality'). Here, we take a fresh approach to the problem, using an independent, homogeneous data set of UBVR imaging observations, from which we obtain the SMC's cluster age and mass distributions in a self-consistent manner. We conclude that the (optically selected) SMC star cluster population has undergone at most 30 per cent (1[sigma]) infant mortality between the age range from about (3-10) Myr, to that of approximately (40-160) Myr. We rule out a 90 per cent cluster mortality rate per decade of age (for the full age range up to 109 yr) at a >6[sigma] level. We independently affirm this scenario based on the age distribution of the SMC cluster sample. [PUBLICATION ABSTRACT] The early evolution of star clusters in the Small Magellanic Cloud (SMC) has been the subject of significant recent controversy, particularly regarding the importance and length of the earliest, largely mass-independent disruption phase (referred to as 'infant mortality'). Here, we take a fresh approach to the problem, using an independent, homogeneous data set of UBVR imaging observations, from which we obtain the SMC's cluster age and mass distributions in a self-consistent manner. We conclude that the (optically selected) SMC star cluster population has undergone at most ∼30 per cent (1σ) infant mortality between the age range from about (3-10) Myr, to that of approximately (40-160) Myr. We rule out a 90 per cent cluster mortality rate per decade of age (for the full age range up to 109 yr) at a >6σ level. We independently affirm this scenario based on the age distribution of the SMC cluster sample. ABSTRACT The early evolution of star clusters in the Small Magellanic Cloud (SMC) has been the subject of significant recent controversy, particularly regarding the importance and length of the earliest, largely mass‐independent disruption phase (referred to as ‘infant mortality’). Here, we take a fresh approach to the problem, using an independent, homogeneous data set of UBVR imaging observations, from which we obtain the SMC's cluster age and mass distributions in a self‐consistent manner. We conclude that the (optically selected) SMC star cluster population has undergone at most ∼30 per cent (1σ) infant mortality between the age range from about (3–10) Myr, to that of approximately (40–160) Myr. We rule out a 90 per cent cluster mortality rate per decade of age (for the full age range up to 109 yr) at a >6σ level. We independently affirm this scenario based on the age distribution of the SMC cluster sample. |
Author | Goodwin, Simon P. De Grijs, Richard |
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Keywords | Magellanic Clouds stellar dynamics open clusters and associations: general globular clusters: general galaxies: star clusters Cluster evolution Mass distribution Open clusters Stellar evolution Globular clusters Star clusters Galaxy clusters Small Magellanic Cloud Age Stellar dynamics |
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Snippet | The early evolution of star clusters in the Small Magellanic Cloud (SMC) has been the subject of significant recent controversy, particularly regarding the... ABSTRACT The early evolution of star clusters in the Small Magellanic Cloud (SMC) has been the subject of significant recent controversy, particularly... |
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SubjectTerms | Astronomy Astrophysics Cosmology Earth, ocean, space Exact sciences and technology galaxies: star clusters globular clusters: general Magellanic Clouds open clusters and associations: general Star & galaxy formation stellar dynamics Theory |
Title | Star cluster ‘infant mortality’ in the Small Magellanic Cloud (Redivivus) |
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