Subscribe free to our newsletters via your
. 24/7 Space News .




TIME AND SPACE
RXTE Detects Heartbeat of Smallest Black Hole Candidate
by Francis Reddy for Goddard Space Flight Center
Greenbelt MD (SPX) Dec 20, 2011


This animation compares the X-ray 'heartbeats' of GRS 1915 and IGR J17091, two black holes that ingest gas from companion stars. GRS 1915 has nearly five times the mass of IGR J17091, which at three solar masses may be the smallest black hole known. A fly-through relates the heartbeats to hypothesized changes in the black hole's jet and disk. Credit: NASA/Goddard Space Flight Center/CI Lab.

An international team of astronomers has identified a candidate for the smallest-known black hole using data from NASA's Rossi X-ray Timing Explorer (RXTE). The evidence comes from a specific type of X-ray pattern, nicknamed a "heartbeat" because of its resemblance to an electrocardiogram. The pattern until now has been recorded in only one other black hole system.

Named IGR J17091-3624 after the astronomical coordinates of its sky position, the binary system combines a normal star with a black hole that may weigh less than three times the sun's mass. That is near the theoretical mass boundary where black holes become possible.

Gas from the normal star streams toward the black hole and forms a disk around it. Friction within the disk heats the gas to millions of degrees, which is hot enough to emit X-rays. Cyclical variations in the intensity of the X-rays observed reflect processes taking place within the gas disk. Scientists think that the most rapid changes occur near the black hole's event horizon, the point beyond which nothing, not even light, can escape.

Astronomers first became aware of the binary system during an outburst in 2003. Archival data from various space missions show it becomes active every few years. Its most recent outburst started in February and is ongoing. The system is located in the direction of the constellation Scorpius, but its distance is not well established. It could be as close as 16,000 light-years or more than 65,000 light-years away.

The record-holder for wide-ranging X-ray variability is another black hole binary system named GRS 1915+105. This system is unique in displaying more than a dozen highly structured patterns, typically lasting between seconds and hours.

"We think that most of these patterns represent cycles of accumulation and ejection in an unstable disk, and we now see seven of them in IGR J17091," said Tomaso Belloni at Brera Observatory in Merate, Italy. "Identifying these signatures in a second black hole system is very exciting."

In GRS 1915, strong magnetic fields near the black hole's event horizon eject some of the gas into dual, oppositely directed jets that blast outward at about 98 percent the speed of light. The peak of its heartbeat emission corresponds to the emergence of the jet.

Changes in the X-ray spectrum observed by RXTE during each beat reveal that the innermost region of the disk emits enough radiation to push back the gas, creating a strong outward wind that stops the inward flow, briefly starving the black hole and shutting down the jet.

This corresponds to the faintest emission. Eventually, the inner disk gets so bright and hot it essentially disintegrates and plunges toward the black hole, re-establishing the jet and beginning the cycle anew. This entire process happens in as little as 40 seconds.

While there is no direct evidence IGR J17091 possesses a particle jet, its heartbeat signature suggests that similar processes are at work. Researchers say that this system's heartbeat emission can be 20 times fainter than GRS 1915 and can cycle some eight times faster, in as little as five seconds.

Astronomers estimate that GRS 1915 is about 14 times the sun's mass, placing it among the most-massive-known black holes that have formed because of the collapse of a single star. The research team analyzed six months of RXTE observations to compare the two systems, concluding that IGR J17091 must possess a minuscule black hole.

"Just as the heart rate of a mouse is faster than an elephant's, the heartbeat signals from these black holes scale according to their masses," said Diego Altamirano, an astrophysicist at the University of Amsterdam in The Netherlands and lead author of a paper describing the findings in the Nov. 4 issue of The Astrophysical Journal Letters.

The researchers say this analysis is just the start of a larger program to compare both of these black holes in detail using data from RXTE, NASA's Swift satellite and the European XMM-Newton observatory.

"Until this study, GRS 1915 was essentially a one-off, and there's only so much we can understand from a single example," said Tod Strohmayer, the project scientist for RXTE at NASA's Goddard Space Flight Center in Greenbelt, Md. "Now, with a second system exhibiting similar types of variability, we really can begin to test how well we understand what happens at the brink of a black hole."

Launched in late 1995, RXTE is second only to Hubble as the longest serving of NASA's operating astrophysics missions. RXTE provides a unique observing window into the extreme environments of neutron stars and black holes.

.


Related Links
Chandra at Hardvard
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
A black hole's dinner is fast approaching
Garching, Germany (SPX) Dec 16, 2011
During a 20-year programme using ESO telescopes to monitor the movement of stars around the supermassive black hole at the centre of our galaxy, a team of astronomers led by Reinhard Genzel at the Max-Planck Institute for Extraterrestrial Physics (MPE) in Garching, Germany, has discovered a unique new object fast approaching the black hole. Over the last seven years, the speed of this obje ... read more


TIME AND SPACE
Peres promotes Israeli moon probe

Hundreds of NASA's moon rocks missing: audit

Schafer Corp Signs Licensing Agreement with MoonDust Technologies

Russia wants to focus on Moon if Mars mission fails

TIME AND SPACE
Meteorite Shock Waves Trigger Dust Avalanches on Mars

Opportunity at One of its Two Winter Spots

Scientists find microbes in lava tube living in conditions like those on Mars

MARSIS Completes Measurement Campaign Over Martian North Pole

TIME AND SPACE
Goddard Scientists Selected as Participating Scientists in Mars Lab and Cassini Missions

Mankind faces long road in space exploration

NASA Reaffirms Agency Scientific Integrity Policy

NASA to change private spacecraft plans

TIME AND SPACE
Tiangong-1 orbiter starts planned cabin checks against toxic gas

China celebrates success of space docking mission

Two and a Half Men for Shenzhou

China honors its 'father' of space efforts

TIME AND SPACE
As Soyuz Rolls ISS Crew Work On Science

ESA astronaut Andre Kuipers Ready For Launch To ISS

Astronaut TJ Creamer Learns Space Station Science From the Ground Up

FLEX-ible Insight Into Flame Behavior

TIME AND SPACE
Next ESA Astronaut Ready For Launch As Soyuz Rolls Out

Acra Control Proven in Low Earth Orbit

Vega moves closer to its first liftoff

Arianespace Signs First launch contracts for Vega

TIME AND SPACE
Earth-sized worlds spotted in new advance for exoplanets

Giant Super-Earths Made Of Diamond Are Possible

New Planet Kepler-21b discovery a partnership of both space and ground-based observations

Astronomers Find Goldilocks Planet and Others

TIME AND SPACE
German company finds rare earths resources in Magadascar

Apple scores hit on HTC in US patent case

Tool enables scientists to uncover patterns in vast data sets

SSTL tests TechDemoSat-1 plasma population payload




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