Showing posts with label Galaxies. Show all posts
Showing posts with label Galaxies. Show all posts

Thursday, January 8, 2015

Massive Millions Collection of Stars and Galaxies Released from Astronomy Database Data Now Available to the Public


"This set of observations is one of the largest astronomical databases ever assembled," remarked Donald Schneider, Distinguished Professor of Astronomy and Astrophysics at Penn State. Images are online at http://science.psu.edu/news-and-events/2015-news/SDSS1-2015


"The more than 70 terabytes we collected during the third epoch of this survey, SDSS-III, contain information on nearly half-a-billion stars and galaxies, including three-dimensional cosmic structures that formed billions of years before the sun began to shine," Schneider said. "This data release will undoubtedly form the basis for many future scientific investigations." Schneider is the SDSS-III survey coordinator and the project's scientific publication coordinator.



"The most astonishing feature of the SDSS is the breadth of groundbreaking research it enables," said SDSS-III Director Daniel Eisenstein of the Harvard-Smithsonian Center for Astrophysics. "We've searched nearby stars for planets, probed the history of our Milky Way and measured 9 billion years of our universe's accelerated expansion. Our data also provide the first direct probe of the expansion rate of the universe 10 billion years ago."

Niel Brandt, Penn State's Verne M. Willaman Professor of Astronomy and Astrophysics, is the SDSS-III leader of a number of projects investigating the properties of quasars, which are supermassive black holes that are devouring enormous amounts of matter, releasing amazing amounts energy in the process. "SDSS-III consists of four independent surveys," he said. "The fields range from searches for planets around nearby stars, to the chemical and dynamical evolution of our galaxy, to the large-scale structure of our universe."

After a decade of design and construction, the SDSS team began mapping the cosmos in 1998, using the dedicated 2.5-meter Sloan Foundation Telescope at Apache Point Observatory in New Mexico. Each phase of the project has used this telescope, which is equipped with a succession of powerful instruments, for a distinct set of astronomical surveys. SDSS-III started observations in July 2008 and completed its six-year, $45 million program in June 2014. The SDSS-III Collaboration includes 51 member institutions and 1,000 scientists from around the world.


University Released Article:

Wednesday, January 7, 2015

Hardware Entering Key Test Phase for the James Webb Space Telescope Flagship Program Project

James Webb Space Telescope 

hardware entering key test phase

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""An array of high tech instruments are being put through their paces ahead of becoming part of the James Webb Space Telescope (JWST). The successor to the Hubble Space Telescope – JWST engineers are currently testing hardware to ensure it will be able to function properly 1.5 million miles from Earth. The spacecraft is preparing for a launch late in 2018.

JWST:

Set for launch in October, 2018 via an Ariane 5 launch vehicle, JWST will be the scientific successor to the Hubble and Spitzer Space Telescopes.
The hugely expensive project came close to cancellation in 2011, after the program suffered with schedule slips and budget overruns. With $3 billion already spent on the JWST program, along with 75 percent of its hardware already in production, the telescope was given a stay of execution, albeit with costs capped at $8 billion.
It was originally forecast to cost just $1.6 billion.
JWSTThe project has NASA, ESA and the CSA as the lead partners, but includes a collaboration of about 17 countries in total.
To be located 1.5 million kilometers from Earth at the Earth-Sun Lagrangian point L2, JWST’s 6.5-meter diameter primary mirror – a gold coated beryllium reflector – and four specialized instruments ensure the spacecraft will provide unprecedented resolution and sensitivity from long-wavelength visible to the mid-infrared.
Unlike Hubble’s single monolithic primary mirror, JWST’s primary mirror is made up of 18 individual, adjustable segments that will be aligned in space.
2015-01-07 19_56_13-nircam1.jpg (720×653)The spacecraft’s array of instrumentation is currently being tested to ensure it can survive the extremes of space, with the most recent test involving the Near Infrared Camera (NIRCam) instrument, which is the primary imager covering the infrared wavelength range 0.6 to 5 microns.
NIRCam will detect light from the earliest stars and galaxies in the process of formation, the population of stars in nearby galaxies, as well as young stars in the Milky Way and Kuiper Belt objects.
NIRCam is equipped with coronagraphs, instruments that allow astronomers to take pictures of very faint objects around a central bright object, like stellar systems. Its coronagraphs work by blocking a brighter object’s light, making it possible to view the dimmer object nearby.
2015-01-07 19_55_13-Satnews Publishers_ Daily Satellite NewsWith the coronagraphs, astronomers hope to determine the characteristics of planets orbiting nearby stars, which is of great interest over recent years,thanks to the discoveries made by NASA’s Kepler spacecraft. ""

Find out more @ nasaspaceflight.com

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