Circinus Galaxy (ESO 97-G13)
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Circinus Galaxy (ESO 97-G13)
Dust filaments of NGC 4217, a possible companion galaxy of Messier 106.
Messier 106
The well-measured distance to M106 is 23.5 million light-years, making this cosmic scene about 80,000 light-years across. Typical in grand spiral galaxies, dark dust lanes, youthful blue star clusters, and pinkish star forming regions trace spiral arms that converge on the bright nucleus of older yellowish stars. But this detailed composite reveals hints of two anomalous arms that don't align with the more familiar tracers. Seen here in red hues, sweeping filaments of glowing hydrogen gas seem to rise from the central region of M106, evidence of energetic jets of material blasting into the galaxy's disk. The jets are likely powered by matter falling into a massive central black hole. [x]
Bode's Galaxy (M81) in Short Wavelength Infrared
Astronomers have discovered the largest known structure in the universe, a clump of active galactic cores that stretch 4 billion light-years from end to end. The structure is a light quasar group (LQG), a collection of extremely luminous Galactic Nulcei powered by supermassive central black holes.
So that’s cool and everything, but maybe some of you would be interested to know why this is a significant find? Beyond just its record-setting bigness.
Since Einstein, physicists have accepted something called the Cosmological Principle, which states that the universe looks the same everywhere if you view it on a large enough scale. You might find some weird shit over here, and some other freaky shit over there, but if you pull back the camera far enough, you’ll find that same weird and/or freaky shit cropping up over and over again in a fairly regular distribution. This is because the universe is (probably) infinite in size and (we are pretty darn sure) has, and has always had, the same forces acting on it everywhere.
So why is this new LQG so radical? (It stands for ‘Large Quasar Group,’ btw, not ‘Light Quasar Group.’)
Well, let’s try to comprehend the scale we’re dealing with. A ‘megaparsec,’ written Mpc, is about 3.2 million light years long. The Milky Way is about 0.03 Mpc across (or 100,000 light years). The distance between our galaxy and Andromeda, our closest galactic neighbor, is 0.75 Mpc, or 2.5 million light years. LQGs are usually about 200 Mpc across. Assuming a logarithmic distribution of weird shit outliers (if you don’t know how logarithmic distribution curves work, don’t worry about it), cosmologists predicted that nothing in the universe should be more than 370 Mpc across.
This new LQG is 1200 Mpc long. That’s four billion light years. Four BILLION LIGHT YEARS. Just to travel from one side to the other of this one thing. I mean for fuck’s sake, the universe is only about 14 billion years old! How many of these things could there be?
Right now it looks like the Cosmological Principle might be out the window, unless physicists can find some way to make the existence of this new LQG work with the math (and boy, are they trying). And that’s totally baffling. It would mean—well, we don’t have any idea what it would mean. That the universe isn’t essentially uniform? That some ‘special’ physics apply/applied in some places but not in others? That Something Happened that is totally outside our current ability to understand or quantify stuff happening?
By the way, no one lives there. The radiation from so many quasars would sterilize rock.
Sources: 1 2 3
are you telling us astronomers have discovered something which is literally fucktuple the size of anything else previously estimated to exist
Anything that fucking rewrites all of what we know about the universe needs to get its ass on my blog. It’s giant, glowy, black hole filled ass.
Along the Cygnus Wall (NGC 7000) [x]
Pelican Nebula (IC 5070 and IC 5067)
Merging White Dwarf Stars March to Supernova Doom
Astronomers have discovered a stellar rarity deep inside an oddly-shaped nebula — two white dwarf stars on the verge of a cataclysmic merging event.
New Horizons Flies By Neptune Exactly 25 Years After Voyager 2 In what NASA is calling a “cosmic coincidence” the New Horizons probe makes its flyby of Neptune on the 25th anniversary of Voyager 2’s Neptune encounter. On August 25, 1989, Voyager 2 made its closest flyby of Neptune, making it the first spacecraft to study the planet. During Voyager 2’s flyby, it discovered a massive anticyclonic storm system called the Great Dark Spot, similar to Jupiter’s Great Red Spot. Today, NASA’s New Horizons probe is embarking on an equally exciting journey to another world never before visited by a spacecraft. When the spacecraft arrives on July 14, 2015, it will provide the first detailed images of Pluto. The dwarf planet is so distant from us that even images captured by the Hubble Space Telescope appear blurry. Read more about the New Horizons mission and Voyager 2’s flyby of Neptune here: http://www.nasa.gov/press/2014/august/nasa-s-new-horizons-spacecraft-crosses-neptune-orbit-en-route-to-historic-pluto/index.htm
The Crescent Nebula NGC 6888 Bi-Color | Terry Hancock
Celebrate Women’s History Month with some sci-fi girl power. Visit the infographic and click on authors, including: Octavia E. Butler, Kate Elliott, Patricia C. Wrede and more for some girl power recommended reads: http://www.openroadmedia.com/wsf
-openroadmedia
Annotation of All The Known Globular Clusters in Messier 31 by Michael van Doorn
Recently, girls across the United States applied for WISH, a program run by NASA which was offered to junior girls who hoped to pursue careers in STEM (Science, Technology, Engineering, and Math, a field in which women are a scathing minority.
However, today an email from NASA to the applicants canceled the program as a result of complaints from male high school students who demanded to participate as well. There is nothing wrong with men and women working together to create innovations and better the world, but with men holding 76% of the jobs in STEM and the stigma surrounding women in science, programs to specifically encourage female participation are essential.
Please join in combating this discouraging act against women in the STEM field by reminding NASA what WISH was really about.
I have several friends who have participated in this program, and it was an amazing experience for all of them. One is currently majoring in Engineering, and the other is majoring in Biology and Flute Performance. If I had known about this program when I was eligible, I would have loved to participate. It would have helped me immensely.
You’ve probably seen me posting about how isolated I feel in my male-dominated physics and math classes. If you care about changing that to help the future women interested in STEM fields, please sign this petition.
Sign it!
SIGNAL FUCKING BOOST. FUCK THOSE GUYS.
Important
Galileo’s sketches of the moon, from Sidereus Nuncius, 1610
The Spookiest Nebulas in Space
Top to bottom:
The Witch Head Nebula. Credit: NASA/STScI Digitized Sky Survey/Noel Carboni.
Chandra image of the Perseus Cluster of galaxies in X-rays. Credit: A. Fabian (IoA Cambridge) et al., NASA.
Skull Nebula. Credit: Gemini South GMOS/Travis Rector/U. of Alaska Anchorage.
The glowing eye of NGC 6751. Credit: HST/NASA/ESA.
Ghost-like nebula. Credit: NASA, ESA, Hubble, R. Sahai (JPL).
SH2-136, an illuminated dark nebula. Credit: Adam Block, NOAO, AURA, NSF.
Tarantula Nebula. Credit: ESO/M.-R. Cioni/VISTA Magellanic Cloud survey.
Via SPACE.com
Cassini gets new views of Titan’s land of lakes (Phys.org) —With the sun now shining down over the north pole of Saturn’s moon Titan, a little luck with the weather, and trajectories that put the spacecraft into optimal viewing positions, NASA’s Cassini spacecraft has obtained new pictures of the liquid methane and ethane seas and lakes that reside near Titan’s north pole. The images reveal new clues about how the lakes formed and about Titan’s Earth-like “hydrologic” cycle, which involves hydrocarbons rather than water… (read more) Image: NASA/JPL-Caltech/University of Arizona/Univ. of Idaho
ALMA discovers large ‘hot’ cocoon around a small baby star
International research team, led by researcher at the University of Electro-Communication observed an infrared dark cloud G34.43+00.24 MM3 with ALMA and discovered a baby star surrounded by a large hot cloud. This hot cloud is about ten times larger than those found around typical solar-mass baby stars. Hot molecular clouds around new-born stars are called “Hot Cores” and have temperature of – 160 degrees Celsius, 100 degrees hotter than normal molecular clouds. The large size of the hot core discovered by ALMA shows that much more energy is emitted from the central baby star than typical solar-mass young stars. This may be due to the higher mass infall rate, or multiplicity of the central baby star. This result indicates a large diversity in the star formation process.
A large hot molecular cloud around a very young star was discovered by ALMA. This hot cloud is about ten times larger than those found around typical solar-mass baby stars, which indicates that the star formation process has more diversity than ever thought. This result was published in the Astrophysical Journal on September 20th, 2013.
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