Showing posts with label Cosmology. Show all posts
Showing posts with label Cosmology. Show all posts

Friday, 27 June 2014

Astronomers Find Slow-Cooked Diamond the Size of Earth



About 900 light-years away, an ancient white dwarf star has cooled into a crystallized chunk of carbon — a diamond. But this isn’t just any old diamond hiding in space: It’s the size of Earth, and it’s 11 billion years old.

The diamond-star, described in a study published in The Astrophysical Journal, is among the coldest white dwarfs astronomers have found. In fact, it’s so cool and dim that it can’t even be seen — its feeble light isn’t nearly powerful enough to pierce the darkness of the cosmos, even from relatively nearby.

Instead, teams inferred the presence of the crystallized dwarf based on the way its gravity perturbs the normally steady radio pulses coming from a spinning companion star.

Yep, the system gets even cooler. The dwarf is orbiting a pulsar — a rapidly rotating neutron star — known by the charismatic moniker PSR J2222-0137. The system is similar to another that was described in 2011, with a crystallized white dwarf orbiting a pulsar — but this new diamond is bigger (there’s also a planet hypothesized to be somewhat diamond-like).

If you were to look in the sky in the direction of the constellation Aquarius, you’d be looking in roughly the right direction to see the system, which is actually a pair of dead stars: The spinning neutron star is the extremely dense remnant of a formerly huge star that ended its life in a supernova. A white dwarf is all that remains of a formerly Sun-like star, contracted into a clump the size of Earth. Left on their own, dwarfs will slowly cool and fade to black over billions of years (but sometimes, with the help of a stellar companion, they can detonate and create dazzling supernovas the outshine entire galaxies).

Friday, 9 May 2014

Universe re-created in computer simulation


Most detailed model of cosmos reproduces distribution of galaxies.
 


“If you wish to make an apple pie from scratch,” said Carl Sagan, “you must first invent the universe.” A new simulation of the evolution of the universe, called the Illustris Project, is a start. Led by Mark Vogelsberger, an astrophysicist at MIT, Illustris is the most detailed and comprehensive simulation of the universe to date and produces a cosmos that looks similar to today’s.

“The only way we can learn about the universe is to observe it through telescopes,” says Vogelsberger. And the way to test ideas about its evolution, he adds, is by doing simulations. One of the simulation’s insights, reported in the May 8 Nature, is the role that supermassive black holes must have played in shaping galaxies. As the behemoths swallow gas, they are known to belch out energetic gas bubbles that span hundreds of thousands of light-years. Without these eruptions, the universe would look much different; galaxies would be larger, for example.