Mostrando entradas con la etiqueta Phoebe. Mostrar todas las entradas
Mostrando entradas con la etiqueta Phoebe. Mostrar todas las entradas

domingo, 29 de abril de 2012

Astronomy: Cassini Finds Saturn Moon has Planet-Like Qualities

Hi My Friends: A VUELO DE UN QUINDE EL BLOG., Data from NASA's Cassini mission reveal Saturn's moon Phoebe has more planet-like qualities than previously thought.
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Phoebe in the Round

This panel of images shows the nearly spherical shape of Saturn's moon Phoebe, as derived from imaging obtained from NASA's Cassini spacecraft. Each image represents a 90-degree turn.
The Cassini-Huygens mission is a cooperative project of NASA, the European Space Agency and the Italian Space Agency. NASA's Jet Propulsion Laboratory, a division of the California Institute of Technology in Pasadena, manages the mission for NASA's Science Mission Directorate, Washington, D.C. The Cassini orbiter was designed, developed and assembled at JPL. The imaging operations center is based at the Space Science Institute in Boulder, Colo.
For more information about the Cassini-Huygens mission
visit http://www.nasa.gov/cassini
and http://saturn.jpl.nasa.gov/ .
The Cassini imaging team homepage is at
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The Face of Phoebe

Phoebe's true nature is revealed in startling clarity in this mosaic of two images taken during Cassini's flyby on June 11, 2004. The image shows evidence for the emerging view that Phoebe may be an ice-rich body coated with a thin layer of dark material. Small bright craters in the image are probably fairly young features. This phenomenon has been observed on other icy satellites, such as Ganymede at Jupiter. When impactors slammed into the surface of Phoebe, the collisions excavated fresh, bright material -- probably ice -- underlying the surface layer. Further evidence for this can be seen on some crater walls where the darker material appears to have slid downwards, exposing more light-colored material. Some areas of the image that are particularly bright - especially near lower right - are over-exposed.
An accurate determination of Phoebe's density -- a forthcoming result from the flyby -- will help Cassini mission scientists understand how much of the little moon is comprised of ices.
This spectacular view was obtained at a phase, or Sun-Phoebe-spacecraft, angle of 84 degrees, and from a distance of approximately 32,500 kilometers (20,200 miles). The image scale is approximately 190 meters (624 feet) per pixel. No enhancement was performed on this image.
The Cassini-Huygens mission is a cooperative project of NASA, the European Space Agency and the Italian Space Agency. The Jet Propulsion Laboratory, a division of the California Institute of Technology in Pasadena, manages the Cassini-Huygens mission for NASA's Office of Space Science, Washington, D.C. The Cassini orbiter and its two onboard cameras, were designed, developed and assembled at JPL. The imaging team is based at the Space Science Institute, Boulder, Colo.
For more information about the Cassini-Huygens mission
The Cassini imaging team homepage is
Image credit: NASA/JPL-Caltech/Space Science Institute
Image addition date: 2004-06-13
 http://ciclops.org/
Image credit: NASA/JPL-Caltech/SSI/Cornel


Cassini Finds Saturn Moon has Planet-Like Qualities:

PASADENA, Calif. -- Data from NASA's Cassini mission reveal Saturn's moon Phoebe has more planet-like qualities than previously thought.
Scientists had their first close-up look at Phoebe when Cassini began exploring the Saturn system in 2004. Using data from multiple spacecraft instruments and a computer model of the moon's chemistry, geophysics and geology, scientists found Phoebe was a so-called planetesimal, or remnant planetary building block. The findings appear in the April issue of the Journal Icarus.
"Unlike primitive bodies such as comets, Phoebe appears to have actively evolved for a time before it stalled out," said Julie Castillo-Rogez, a planetary scientist at NASA's Jet Propulsion Laboratory in Pasadena, Calif. "Objects like Phoebe are thought to have condensed very quickly. Hence, they represent building blocks of planets. They give scientists clues about what conditions were like around the time of the birth of planets and their moons."
Cassini images suggest Phoebe originated in the far-off Kuiper Belt, the region of ancient, icy, rocky bodies beyond Neptune's orbit. Data show Phoebe was spherical and hot early in its history, and has denser rock-rich material concentrated near its center. Its average density is about the same as Pluto, another object in the Kuiper Belt. Phoebe likely was captured by Saturn's gravity when it somehow got close to the giant planet.
Saturn is surrounded by a cloud of irregular moons that circle the planet in orbits tilted from Saturn's orbit around the sun, the so-called equatorial plane. Phoebe is the largest of these irregular moons and also has the distinction of orbiting backward in relation to the other moons. Saturn's large moons appear to have formed from gas and dust orbiting in the planet's equatorial plane. These moons currently orbit Saturn in that same plane.
"By combining Cassini data with modeling techniques previously applied to other solar system bodies, we've been able to go back in time and clarify why it is so different from the rest of the Saturn system," said Jonathan Lunine, a co-author on the study and a Cassini team member at Cornell University, Ithaca, N.Y.
Analyses suggest that Phoebe was born within the first 3 million years of the birth of the solar system, which occurred 4.5 billion years ago. The moon may originally have been porous but appears to have collapsed in on itself as it warmed up. Phoebe developed a density 40 percent higher than the average inner Saturnian moon.
Objects of Phoebe's size have long been thought to form as "potato-shaped" bodies and remained that way over their lifetimes. If such an object formed early enough in the solar system's history, it could have harbored the kinds of radioactive material that would produce substantial heat over a short timescale. This would warm the interior and reshape the moon.
"From the shape seen in Cassini images and modeling the likely cratering history, we were able to see that Phoebe started with a nearly spherical shape, rather than being an irregular shape later smoothed into a sphere by impacts," said co-author Peter Thomas, a Cassini team member at Cornell.
Phoebe likely stayed warm for tens of millions of years before freezing up. The study suggests the heat also would have enabled the moon to host liquid water at one time. This could explain the signature of water-rich material on Phoebe's surface previously detected by Cassini.
The new study also is consistent with the idea that several hundred million years after Phoebe cooled, the moon drifted toward the inner solar system in a solar-system-wide rearrangement. Phoebe was large enough to survive this turbulence.
More than 60 moons are known to orbit Saturn, varying drastically in shape, size, surface age and origin. Scientists using both ground-based observatories and Cassini's cameras continue to search for others.
The Cassini-Huygens mission is a cooperative project of NASA, the European Space Agency and the Italian Space Agency. JPL manages the mission for the agency's Science Mission Directorate in Washington. The California Institute of Technology in Pasadena manages JPL for NASA.
For more information on the Cassini mission,
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com

ayabaca@yahoo.com
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lunes, 26 de octubre de 2009

SATURNO..................TELESCOPIO SPITZER DESCUBRE GIGANTESCO ANILLO

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido una hermosa vista panorámica de la NASA fotografiando un enorme anillo del planeta SATURNO. Arriba: Concepto artístico del recién descubierto anillo infrarrojo alrededor de Saturno. [Más información]

Justo cuando se pensaba que ya se habían descubierto todas las cosas grandes en nuestro sistema solar, el telescopio espacial Spitzer, de la NASA, encontró un nuevo y extraordinario anillo gigantesco alrededor de Saturno.

Octubre 7, 2009: El telescopio espacial Spitzer, de la NASA, ha descubierto un enorme anillo infrarrojo alrededor de Saturno.
"Se trata de un anillo gigante", comenta Anne Verbiscer, astrónoma de la Universidad de Virginia, en Charlottesville. "Si usted pudiese ver el anillo en el cielo nocturno, su amplitud cubriría el ancho de dos lunas llenas".
Verbiscer es coautora de un artículo sobre el descubrimiento, el cual será publicado en Internet mañana, en la revista Nature. Los demás autores son Douglas Hamilton, de la Universidad de Maryland, y Michael Skrutskie, de la Universidad de Virginia.

El nuevo disco se encuentra ubicado en los sectores lejanos del sistema de Saturno, con una órbita inclinada de 27 grados respecto del plano del anillo principal. La mayor parte de su material tiene su origen a aproximadamente seis millones de kilómetros (3,7 millones de millas) de distancia del planeta y se extiende hacia las afueras alrededor de otros 12 millones de kilómetros más (7,4 millones de millas). Se necesitarían aproximadamente mil millones de Tierras ubicadas una al lado de la otra para rellenar el espacio del voluminoso anillo. Phoebe (Febe, en idioma español), una de la lunas más lejanas de Saturno, gira en órbita en los interiores del anillo recientemente encontrado y, posiblemente, es la fuente del material que lo forma.

El disco es tenue y está compuesto por partículas de hielo y de polvo altamente dispersadas. Los "ojos" infrarrojos del telescopio Spitzer fueron capaces de detectar el resplandor del gélido polvo, el cual posee una temperatura de apenas alrededor de 80 grados kelvin (menos 316 grados Fahrenheit o alrededor de menos 157,78 grados centígrados).


El descubrimiento podría ayudar a aclarar un viejo misterio acerca de una de las lunas de Saturno. Iapetus (Iapeto, en idioma español) posee una apariencia extraña: una de sus caras es brillante mientras que la otra es realmente oscura; tiene un patrón similar al del símbolo del ying-yang. El astrónomo Giovanni Cassini fue el primero en observar dicha luna en 1671, y años después se dio cuenta de su cara oscura, ahora denominada Cassini Regio, en su honor.

EL anillo gigante de Saturno podría explicar cómo es que la zona Cassini Regio se hizo tan oscura. El anillo se encuentra girando en la misma dirección que Phoebe, mientras que Iapetus, los otros anillos y la mayoría de las otras lunas de Saturno lo hacen en el sentido opuesto. Según la opinión de los científicos, algo del oscuro y polvoroso material del anillo exterior se mueve hacia Iapetus, chocando contra la gélida luna, precisamente de la misma manera en que lo hacen los insectos contra un parabrisas.

"Durante mucho tiempo, los astrónomos han sospechado de la existencia de una conexión entre la luna exterior de Saturno, Phoebe, y el material oscuro sobre Iapetus", comenta Hamilton. "Este nuevo anillo proporciona el eslabón perdido".

Verbiscer y algunos colegas usaron la cámara infrarroja de longitudes de onda amplias del telescopio Spitzer, conocida como el fotómetro de imágenes en bandas múltiples, con el fin de escanear (examinar) una sección del cielo que se encuentra alejada de Saturno y parte del interior de la órbita de Phoebe. Los astrónomos intuían que Phoebe probablemente se estaría moviendo en círculo a través de un cinturón de polvo; cuando los científicos observaron por primera vez los datos proporcionados por el telescopio Spitzer, una cortina de polvo apareció abruptamente.

El anillo sería difícilmente observable a través de telescopios ópticos. La cantidad relativamente pequeña de partículas en el anillo no reflejaría suficiente luz visible, en particular allí en Saturno, donde la luz solar es débil.

"Las partículas se encuentran tan separadas entre sí, que si usted estuviera de pie dentro del anillo, no se percataría del hecho", comenta Verbiscer. "Al enfocarse en el resplandor del polvo gélido del anillo, el telescopio Spitzer hizo que el hallazgo fuera algo fácil".

Para observar imágenes adicionales relacionadas con el descubrimiento del anillo y acceder a más información sobre el telescopio Spitzer, visite: http://www.spitzer.caltech.edu/.
Tomado de: ciencia@nasa

Guillermo Gonzalo Sánchez Achutegui
ayabaca@hotmail.com
ayabaca@gmail.com
ayabaca@yahoo.com