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Subject: Astronomy - How hefty can a star get? - Robert Burnham (03/10/2005)
Date: Thu, 10 Mar 2005 16:51:40 -0500
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                  <DIV class=3Darticle-headline>How hefty can a star =
get? </DIV>
                  <DIV class=3Darticle-byline>Two independent =
investigations point=20
                  to an upper limit for how much mass a star can =
hold.</DIV>
                  <DIV class=3Darticle-author>Robert Burnham</DIV>
                  <TABLE class=3Darticle-section cellSpacing=3D0 =
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                            <TD class=3Darticle-image-cell vAlign=3Dtop=20
                              width=3D"1%"><DIV><IMG height=3D412=20
                              alt=3D"Arches cluster"=20
                              =
src=3D"http://www.astronomy.com/objects/images/arches_cluster_hst_500.jpg=
"=20
                              width=3D500 border=3D0> </DIV>
                              <DIV class=3Dphoto-caption style=3D"WIDTH: =
99%">The=20
                              Hubble Space Telescope=E2=80=99s NICMOS =
infrared camera=20
                              peered into the crowded Arches cluster and =
let an=20
                              astronomer inventory its several thousand =
stars.=20
                              The result sets a firm upper limit on =
stellar=20
                              birthweight. <SPAN =
class=3Dphoto-credit>NASA / ESA /=20
                              STScI, D. =
Figer</SPAN></DIV></TD></TR></TBODY></TABLE>
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                        <DIV class=3Darticle-sectionhead></DIV>
                        <DIV class=3Darticle-sectiontext><SPAN=20
                        class=3Dnews-date>March 10, 2005</SPAN><BR><SPAN =

                        class=3Ddropcap>A</SPAN> study of a massive star =
cluster=20
                        near the Milky Way Galaxy's center finds that =
stars are=20
                        born with no more than 150 times the Sun's=20
                        mass.<BR><BR>Donald Figer of the Space Telescope =
Science=20
                        Institute used the Hubble Space Telescope to =
take deep=20
                        images of the Arches star cluster. When he =
determined=20
                        the masses of the cluster's stars, he found none =
with=20
                        more than 150 solar masses.<BR><BR>"This is one =
of the=20
                        densest young star clusters in the Milky Way," =
notes=20
                        Figer. He adds that it is about 2 million years =
old =E2=80=94=20
                        young enough, that is, not to have already lost =
its most=20
                        massive stars through supernova explosions. =
Containing=20
                        several thousand stars, the Arches cluster is =
large=20
                        enough and close enough for a detailed =
inventory. "We're=20
                        about 90 percent complete in counting all its =
stars," he=20
                        says.</DIV></TD></TR>
                    <TR>
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                              <A=20
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','objects/images/how_big_can_a_star_be_lrg.jpg',event);"=20
                              =
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                              <DIV><IMG height=3D197 alt=3D"Stellar =
populations "=20
                              =
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jpg"=20
                              width=3D200 border=3D0> </DIV></A>
                              <DIV class=3Dphoto-caption>You're cut off. =
Stellar=20
                              populations typically follow a pattern =
with the=20
                              least-massive stars being greatly more =
numerous=20
                              than heftier ones. When astronomer Donald =
Figer=20
                              plotted this graph (larger image) for the =
Arches=20
                              cluster, he expected to find several =
extremely=20
                              massive stars. Instead, he discovered none =

                              weighing more than 150 Suns. <SPAN=20
                              class=3Dphoto-credit>NASA / ESA / STScI, =
A.=20
                              Feild</SPAN> <A=20
                              onclick=3D"return =
enlarge('650','496','Stellar populations =
','objects/images/how_big_can_a_star_be_lrg.jpg',event);"=20
                              =
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.jpg">[larger=20
                              image]</A> =
</DIV></TD></TR></TBODY></TABLE>
                        <DIV class=3Darticle-sectionhead></DIV>
                        <DIV class=3Darticle-sectiontext>The new HST =
finding,=20
                        published in <I>Nature</I> (March 10, 2005) =
supports a=20
                        recent study appearing in <I>The Astrophysical =
Journal=20
                        Letters</I> (February 10, 2005). In that paper, =
Sally=20
                        Oey of the University of Michigan and Cathie =
Clarke of=20
                        the Institute of Astronomy, Cambridge, United =
Kingdom,=20
                        examine nine star clusters and associations, not =

                        including the Arches cluster. They find the most =
massive=20
                        stars have 120 to 200 solar masses. <BR><BR>"The =
Arches=20
                        cluster could be a unique object," says Oey. =
"But our=20
                        statistical analysis of nine other clusters in =
the Milky=20
                        Way and the neighboring Large Magellanic Cloud =
also=20
                        demonstrates a lack of extremely massive=20
                        stars."<BR><BR>What sets a limit to star masses? =

                        Theorists aren't sure. But Stan Woosley of the=20
                        University of California, Santa Cruz, explains =
that as=20
                        the heftiest stars form, they encounter two =
effects,=20
                        either of which could cap their masses. In the =
first, he=20
                        says, the growing star reaches a size where its=20
                        brightness blows away any infalling material.=20
                        <BR><BR>With the other effect, "which I rather =
favor,"=20
                        Woosley points out that the most massive stars =
(unlike=20
                        the Sun) are supported by internal radiation. =
"Above=20
                        about 100 solar masses," he says, "the pressure =
holding=20
                        up a star comes from light itself. So 150 solar =
masses=20
                        might be the last point at which a star is not=20
                        overwhelmed by its own =
radiation."<BR><BR>Extremely=20
                        hefty stars have been found before. In 1997, =
Figer and=20
                        several coworkers reported a star in the Pistol =
Nebula=20
                        that weighs 200 solar masses. But, he says, =
"It's one of=20
                        the most difficult stars to model. Our original =
estimate=20
                        was 150 to 250 solar masses."<BR><BR>In =
addition, he=20
                        says, work done since that finding was announced =
shows=20
                        the cluster containing the Pistol star has an =
age of 4=20
                        million years. This would give the star a =
significantly=20
                        older age than the 3-million-year lifetime that =
the most=20
                        massive stars can attain. However, he notes, the =
Pistol=20
                        star may be a binary pair of stars, each being =
well=20
                        under the mass limit.<BR><BR>"Every time we find =
a star=20
                        exceeding the limit, it has something funny =
going=20
                        on."</DIV></TD></TR>
                    <TR>
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