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Showing posts with label Milky Way. Show all posts
Showing posts with label Milky Way. Show all posts

Wednesday, September 14, 2016

Gaia Mission Shares First Data Detailing the Milky Way Galaxy Like Never Before


Space

The European Space Agency is about to reveal a three dimensional map of a billion stars in our galaxy collected from the Gaia mission. The data should give us a picture of the Milky Way that is 1,000 times more complete than anything we have today.


The Gaia spacecraft is the European Space Agency's mission to compile the most detailed three dimensional map ever made of our Milky Way galaxy. The spacecraft's mission involves charting one percent of the galaxy, about billion stars. This first data dump will open a new chapter in astronomy, according to the agency.

Gaia houses two telescopes, using ten mirrors of different shapes and sizes to collect, focus and direct light onto Gaia's sensor. On the focal plane, are three science instruments: the astrometric instrument, the photometric instrument and the radial velocity spectrograph.

ESA Gaia mission

With a total of 106 CCD detectors and almost one billion pixels, Gaia's camera is the largest ever flown into space.

Related articles
Launched on 19 December 2013 on a Soyuz-STB/Fregat-MT launch vehicle from Europe's spaceport in Kourou, French Guiana, Gaia traveled to its orbit around the Lagrangian point L2, 1.5 million km further from the Sun than Earth.

Now one thousand days after launch, the mission will release its first set of data.

The map (shown above) shows the density of stars observed by Gaia in each portion of the sky. Brighter regions indicate denser concentrations of stars, while darker regions correspond to patches of the sky where fewer stars are observed. The Milky Way is a spiral galaxy, with most of its stars residing in a disc about 100 000 light-years across and about 1000 light-years thick. This structure is visible in the sky as the Galactic Plane – the brightest portion of this image –which runs horizontally and is especially bright at the center.

This first Gaia data release contains a catalogue of 1,140,622,719 stars with precise measurements of their position on the sky and brightness.

From the first year of Gaia's observations alone, it is not possible to separate two concurrent effects in the changes of stellar positions recorded by the satellite: the apparent annual shift caused by Earth's motion around the Sun, or parallax, which is inversely proportional to a star's distance, and the continuous motion across the sky as stars drift through the galaxy.

With the data, it has been possible to estimate the distance from us and the proper motion for the 2,057,050 stars in common with the earlier Hipparcos and Tycho-2 Catalogues, based on data from ESA's Hipparcos mission.

In addition, the data release also contains 3194 variable stars, including details about their brightness variations. Variable stars periodically change their brightness as they rhythmically swell and shrink in size leading to periodic brightness changes.

On a typical day, Gaia performs about 637 million astrometric measurements, 155 million photometric measurements, and 13 million spectrometric measurements. These correspond to roughly 70 million celestial objects transiting the spacecraft's focal plane. Every day, Gaia sends about 40 GB of data back to Earth.

The spacecraft has recorded over 50 billion source transits over its focal plane so far, more than 110 billion photometric observations, and almost 10 billion spectra. Six data processing centers are involved in the data challenge, and about 120 000 hours of computations have so far been necessary to identify sources in the data collected by the spacecraft and associate them with the corresponding object in the sky.


SOURCE  ESA


By  33rd SquareEmbed



Thursday, September 4, 2014


 Cosmology
Superclusters – regions of space that are densely packed with galaxies – are the biggest structures in the Universe. Now, a team based in Hawaii has come up with a new technique that maps the Universe according to the flow of galaxies across space. Redrawing the boundaries of the cosmic map, they redefine our home supercluster and name it Laniakea, which means ‘immeasurable heaven’ in Hawaiian.







Anew cosmic map is giving scientists an unprecedented look at the boundaries for the giant supercluster that is home to Earth's own Milky Way galaxy and many others. Scientists from the University of Hawaii even have a name for the colossal galactic group: Laniakea, Hawaiian for "immeasurable heaven."

The scientists who created the new 3D map suggest that the Laniakea supercluster of galaxies may even be part of a still-larger structure they have not fully defined yet.

The research has been published in the journal Nature.

"We live in something called 'the cosmic web,' where galaxies are connected in tendrils separated by giant voids," said lead study author Brent Tully, an astronomer at the University of Hawaii at Honolulu.

Laniakea

Along with the Illustris simulation of the universe, the Laniakea data processing and visualization are both staggering in complexity, and awe-inspiring in scope. For an even more detailed view of the video above, a longer video is available, with commentary.

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Galaxies are not spread randomly throughout the universe. Instead, they clump in groups, such as the one Earth is in, the Local Group, which contains dozens of galaxies. In turn, these groups are part of massive clusters made up of hundreds of galaxies, all interconnected in a web of filaments in which galaxies are strung like pearls. The colossal structures known as superclusters form at the intersections of filaments.

The giant structures making up the universe often have unclear boundaries. To better define these structures, astronomers examined Cosmic Flows-2, the largest-ever catalog of the motions of galaxies, reasoning that each galaxy belongs to the structure whose gravity is making it flow toward.
"We have a new way of defining large-scale structures from the velocities of galaxies rather than just  looking at their distribution in the sky," Tully said.

Welcome to Laniakea

The new 3D map developed by Tully and colleagues shows that the Milky Way galaxy resides in the outskirts of the Laniakea Supercluster, which is about 520 million light-years wide. The supercluster is made up of about 100,000 galaxies with a total mass about 100 million billion times that of the sun.

The name Laniakea was suggested by Nawa'a Napoleon, who teaches Hawaiian language at Kapiolani Community College in Hawaii. The name is meant to honor Polynesian navigators who used their knowledge of the heavens to make long voyages across the immensity of the Pacific Ocean.

"We live in the Local Group, which is part of the Local Sheet next to the Local Void — we wanted to come up with something a little more exciting than 'Local,'" Tully told Space.com.

Laniakea


"We might find that we have to come up with another name for something larger than we're a part of — we're entertaining that as a real possibility."


This supercluster also includes the Virgo cluster and Norma-Hydra-Centaurus, otherwise known as the Great Attractor. These new findings help clear up the role of the Great Attractor, which is a problem that has kept astronomers busy for 30 years. Within the Laniakea Supercluster, the motions of galaxies are directed inward, as water flows in descending paths down a valley, and the Great Attractor acts like a large flat-bottomed gravitational valley with a sphere of attraction that extends across the Laniakea Supercluster.

Tully noted Laniakea could be part of an even larger structure.

"We probably need to measure to another factor of three in distance to explain our local motion," Tully said. "We might find that we have to come up with another name for something larger than we're a part of — we're entertaining that as a real possibility."



SOURCE  Space.com
By 33rd SquareEmbed