Subscribe free to our newsletters via your
. Solar Energy News .




TIME AND SPACE
Using Black Holes to Measure the Universe's Rate of Expansion
by Staff Writers
Tel Aviv, Israel (SPX) Apr 25, 2013


Using radiation to measure distances is a general method in astronomy, but until now black holes have never been used to help measure these distances. By adding together measurements of the amount of energy being emitted from the vicinity of the black hole to the amount of radiation which reaches Earth, it's possible to infer the distance to the black hole itself and the time in the history of the universe when the energy was emitted.

A few years ago, researchers revealed that the universe is expanding at a much faster rate than originally believed - a discovery that earned a Nobel Prize in 2011. But measuring the rate of this acceleration over large distances is still challenging and problematic, says Prof. Hagai Netzer of Tel Aviv University's School of Physics and Astronomy.

Now, Prof. Netzer, along with Jian-Min Wang, Pu Du and Chen Hu of the Institute of High Energy Physics of the Chinese Academy of Sciences and Dr. David Valls-Gabaud of the Observatoire de Paris, has developed a method with the potential to measure distances of billions of light years with a high degree of accuracy.

The method uses certain types of active black holes that lie at the center of many galaxies. The ability to measure very long distances translates into seeing further into the past of the universe - and being able to estimate its rate of expansion at a very young age.

Published in the journal Physical Review Letters, this system of measurement takes into account the radiation emitted from the material that surrounds black holes before it is absorbed. As material is drawn into a black hole, it heats up and emits a huge amount of radiation, up to a thousand times the energy produced by a large galaxy containing 100 billion stars. For this reason, it can be seen from very far distances, explains Prof. Netzer.

Solving for unknown distances
Using radiation to measure distances is a general method in astronomy, but until now black holes have never been used to help measure these distances. By adding together measurements of the amount of energy being emitted from the vicinity of the black hole to the amount of radiation which reaches Earth, it's possible to infer the distance to the black hole itself and the time in the history of the universe when the energy was emitted.

Getting an accurate estimate of the radiation being emitted depends on the properties of the black hole. For the specific type of black holes targeted in this work, the amount of radiation emitted as the object draws matter into itself is actually proportional to its mass, say the researchers. Therefore, long-established methods to measure this mass can be used to estimate the amount of radiation involved.

The viability of this theory was proved by using the known properties of black holes in our own astronomical vicinity, "only" several hundred million light years away. Prof. Netzer believes that his system will add to the astronomer's tool kit for measuring distances much farther away, complimenting the existing method which uses the exploding stars called supernovae.

Illuminating "Dark Energy"
According to Prof. Netzer, the ability to measure far-off distances has the potential to unravel some of the greatest mysteries of the universe, which is approximately 14 billion years old.

"When we are looking into a distance of billions of light years, we are looking that far into the past," he explains. "The light that I see today was first produced when the universe was much younger."

One such mystery is the nature of what astronomers call "dark energy," the most significant source of energy in the present day universe. This energy, which is manifested as some kind of "anti-gravity," is believed to contribute towards the accelerated expansion of the universe by pushing outwards. The ultimate goal is to understand dark energy on physical grounds, answering questions such as whether this energy has been consistent throughout time and if it is likely to change in the future.

.


Related Links
American Friends of Tel Aviv University
Understanding Time and Space






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








TIME AND SPACE
Early Galaxies Were Ahead Of Their Time
London, UK (SPX) Apr 22, 2013
Astronomers using Europe's Herschel Space Observatory have discovered a distant galaxy that challenges the current theories of galaxy evolution. Seen when the universe was less than a billion years old, it is forming stars at a much faster rate than should be possible according to existing predictions. This particular galaxy, known only as "HFLS3," is so distant that the light we see has t ... read more


TIME AND SPACE
China conducts its first successful bio-fueled airline flight

Bugs produce diesel on demand

New input system for biogas systems

A key to mass extinctions could boost food, biofuel production

TIME AND SPACE
New sensors can give robot hands a 'gentle touch'

Simple robot can 'scoot' along power lines to look for damage

Swarming robots could be the servants of the future

Robot ants successfully mimic real colony behavior

TIME AND SPACE
U.S. leads in wind installations

Providing Capital and Technology, GE is Farming the Wind in America's Heartland with Enel Green Power

Wind skeptic British minister replaced

Using fluctuating wind power

TIME AND SPACE
Chinese prefer gas-guzzling vehicles?

Auto makers show off vehicles in key China market

GM by any other name? Car firms face brand puzzle in China

SUV popularity in China casts cloud over green-energy cars

TIME AND SPACE
Lebanon feuds could hurt its quest for gas

India to get LNG from the US

Iraq oil exports up in March

Boeing to Begin Modifying 787s as FAA Approves Battery Improvements

TIME AND SPACE
Czech CEZ wants better bids for nuclear plant

GDF Suez says Q1 energy sales edge higher

Japan, France set to win Turkish nuclear plant deal: report

Lithuania to resume nuclear plant talks: PM

TIME AND SPACE
New York approves power line from Canada

$674 billion annual spend on 'unburnable' fossil fuel assets signals failure to recognise huge financial risks

Germany energy transition faces cuts after European Parliament vote

Iraq: Turkish energy plan picks up speed

TIME AND SPACE
Indonesia moves towards approving deforestation plan

Brazil urged to stop invading indigenous lands

New research challenges assumptions about effects of global warming on mountain tree line

Brazil's indigenous protest to defend ancestral lands




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement