From: Subject: Carnegie Observatories Research: Allan Sandage Date: Mon, 3 May 2004 14:21:31 -0700 MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_000_0000_01C43119.EE02A270"; type="text/html" X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2800.1106 This is a multi-part message in MIME format. ------=_NextPart_000_0000_01C43119.EE02A270 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Content-Location: http://www.ociw.edu/research/sandage.html Carnegie Observatories Research: Allan = Sandage
3D"[OCIW Home  |   Search  |   = About Us  | =   Research  |   = Magellan  |   = du Pont and Swope  | =   Instrumentation =20

Allan Sandage=20
=20

A Staff Member since 1952, Allan Sandage = has=20 received numerous awards, including the Peter Gruber = Cosmology=20 Prize, the Tomalla Prize from the Swiss Physical Society, = the=20 Crafoord Prize from the Swedish Academy of Sciences, and = gold medals=20 from the Royal Astronomical Society, the Astronomical = Society of the=20 Pacific, and the Pontifical Academy of Sciences. He has also = received the Russell Prize from the American Astronomical = Society,=20 the Presidential National Medal of Science, and the = Eddington Medal=20 from the Royal Astronomical Society.

In 1903, George Ellery Hale told the = first trustees=20 of the Carnegie Institution why an astrophysical observatory = on=20 Mount Wilson was necessary: it could advance the new = sciences of=20 origins and evolution, and "solve the problem of stellar = evolution."=20 Hale argued that by comparing the physical properties of the = stars=20 with those of the Sun, the solution to stellar evolution = would=20 "simply fall out." Although it did not quite work that way, = the=20 solution did emerge beginning in the 1940s, from data = obtained=20 principally at Mount Wilson.=20

The contemporary ideas of how stars age, = how our=20 galaxy formed, and how the universe is arranged have now = largely=20 been solved through many long-range programs started at the=20 Observatories decades ago. Hubble's discoveries in = observational=20 cosmology in the 1930s and Baade's concept of stellar = populations in=20 the 1950s, for instance, have been integrated into a fabric = that has=20 become the present paradigm of astronomical origins.=20

Sandage has been involved in astronomical = origins=20 and evolution since he joined Carnegie in 1952. His first = result=20 that year was the discovery made with Arp and Baum that the = main=20 sequence termination luminosity of the globular clusters M92 = and M3=20 were about the same as the intrinsic luminosity of the Sun. = The=20 faintness of this termination point showed that stars of = Baade's=20 population II, which include the globular clusters, were = extremely=20 old. Determining the actual age has been a master problem = that has=20 occupied Sandage and others for the better part of the last=20 half-century. Globular clusters, which date to the formation = of our=20 galaxy and are close to the age of the universe, are now = estimated=20 to be about 12 billion years old. =

=20

This classic color-magnitude diagram = reveals the=20 evolution of stars in 10 clusters of different ages. = Magnitudes of=20 stars are plotted against their colors (or, luminosities = against=20 temperatures). The position of a star on this diagram = depends on age=20 as well as mass and chemical composition. Most stars lie = along the=20 "main sequence," which extends from the upper left (hot, = bright,=20 blue stars) to the lower right (cool, faint, red stars). = Depending=20 on their ages, stars "peel off" from the main sequence at = different=20 points (the higher the turnoff point, the younger the = cluster). When=20 these relationships were discovered by Sandage and others it = revolutionized our ideas about stellar evolution.
[Full=20 size image.]

The other means to date events in the = universe is=20 to determine the rate at which the universe expands and the = galaxies=20 move away from each other. Since the early 1950s, Sandage = has=20 investigated this problem and has been involved in the = various=20 aspects of establishing the distance scale to galaxies. With = Dr.=20 Gustav Tammann, at the University of Basel, and Dr. Abijit = Saha, of=20 Kitt Peak National Observatory, the scientists determined = that the=20 universe is expanding at a rate of 58 = kilometers/second/megaparsec.=20 Using this result, we can estimate the age of the universe = to be=20 about 14 billion years. The fact that these two timescales = are so=20 close to each other is one of the strongest proofs of the = standard=20 model of observational cosmology. =

SELECTED PUBLICATIONS=20

Sandage, A. 1999. Bias properties of extragalactic distance = indicators=20 VIII: H0 From distance-limited luminosity class and morphological=20 type-specific luminosity functions for Sb, Sbc, and Sc galaxies = calibrated=20 using Cepheids, Astrophys. J. 527, 479.=20

Sandage, A. 1975. The redshift-distance relation VIII: = magnitudes and=20 redshifts of southern galaxies in groups: a further mapping of the = local=20 velocity field and an estimate of the deceleration parameter, = Astrophys.=20 J. 202, 563.=20

Eggen, O. J., D. Lynden-Bell, and A. Sandage. 1962. Evidence = from the=20 motions of old stars that the galaxy collapsed, Astrophys. J. 136, = 748.=20

Sandage, A. 1961. The ability of the 200-inch telescope to = discriminate=20 between selected world models, Astrophys. J. 133, 355.=20

Sandage, A. 1957. Observational approach to evolution III:=20 semi-empirical evolution tracks for M67 and M3, Astrophys. J. 126, = 326.=20


PREVIOUS = STAFF = NEXT=20



Updated on Monday, August 27, 2001=20   www@ociw.edu=20

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