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




SOLAR SCIENCE
NASA-Funded Study Finds Two Solar Wind Jets in the Heliosphere
by Staff Writers
Greenbelt MD (SPX) Mar 04, 2015


The yellow shape is the heliopause, the boundary between the heliosphere and the local interstellar medium. The sun sits at the center of this bubble, but is too small to be seen here. The gray lines are the solar magnetic field lines and the red lines are the interstellar magnetic field. Image courtesy M. Opher. For a larger version of this image please go here.

As the sun skims through the galaxy, it emits charged particles in a stream of plasma called the solar wind. The solar wind, in turn, creates a bubble known called the heliosphere that extends far beyond the planets of the solar system. For decades, scientists have visualized the heliosphere as shaped like a comet, with a very long tail extending some 464 billion miles, which is thousands of times as far as the distance from Earth to the sun.

New NASA-funded research now suggests that the heliosphere is actually dominated by two giant jets of material shooting backwards over the north and south poles of the sun, which are confined by the interaction of the sun's magnetic field with the interstellar magnetic field. These curve around in two-relatively short - tails toward the back.

The end result is a heliosphere without that long tail; a heliosphere that looks a lot more like a crescent moon than a comet. What's more, the two jets are similar to other astrophysical jets seen in space, so studying them locally could open doors to understanding such jets throughout the universe. The research is described in a paper in Astrophysical Journal Letters, which appeared online on Feb. 19, 2015.

"Everyone's assumption has been that the shape of the heliosphere was molded by the flow of interstellar material passing around it," said Merav Opher, an astronomer at Boston University, who is lead author on the paper.

"Scientists thought the solar wind flowing down the tail could easily pull the magnetic fields in the heliosphere along as it flowed by, creating this long tail. But it turns out the magnetic fields are strong enough to resist that pull - so instead they squeeze the solar wind and create these two jets."

Opher and her colleagues found the jets and determined the new shape when they adjusted simulations of the heliosphere based on observations collected from NASA's Voyager 1 spacecraft, which recently moved outside of the heliosphere into interstellar space.

As the first man-made object outside of our solar system, Voyager provided our only glimpse so far of the interstellar medium and it provided one giant surprise: The magnetic fields out there were aligned pretty much the same as the ones in here, though it had long been expected they would be oriented in a different direction.

Opher -- along with space scientist Jim Drake at the University of Maryland in College Park who is a co-author on the paper - had previously created models based on computer code developed by space physicists at the University of Michigan of the heliosphere.

Their previous work focused on the nose of the heliosphere, trying to understand the physics there as we hurtle through space. To see if they could replicate the unexpected Voyager results, the team created a higher resolution simulation.

The new simulation described a heliosphere unlike one considered before.

"The Voyagers had a flashlight in the kitchen, and nobody was looking in the attic," she remarks. "We noticed, while studying the draping of the galaxy's magnetic field around the nose, that the heliosphere was much shorter than we anticipated."

Instead of being dominated solely by the flow of the interstellar material to create a long tail, the shape of the heliosphere is also affected by the solar wind jets emanating from the sun, said Drake.

"If there were no interstellar flow, then the magnetic fields around the sun would shape the solar wind into two jets pointing straight north and south," said Drake. "The magnetic fields contract around these jets, shooting the solar wind out like squishing a tube of toothpaste."

In the presence of the interstellar flow, these jets are bowed backwards, creating a crescent shape, as seen from the side of the sun. The jets erode in the presence of the strong interstellar flow, leading to two attenuated, short tails. This leads to a much shorter heliosphere of only about 250 times the distance between Earth and the sun, or about 23 billion miles.

"Not only is the heliosphere's shape different from what people thought," said Drake. "But the mechanism for these jets is the same as in many astrophysical systems. Astrophysical jets elsewhere produce energetic particles, but they are remote and hard to diagnose. Our jets are nearby so we might be able to figure out how they produce the energetic particles measured in the heliosphere."

To support their heliosphere model, the scientists turned to additional observations of the tail. Both NASA's Cassini and Interstellar Boundary Explorer, or IBEX, have gathered information about the tail end of the heliosphere by looking at what's called energetic neutral atoms, or ENAs.

ENAs are created by energetic particle collisions in space and conveniently travel in straight lines, unlike many other particles in space. Observing ENAs traveling in from a certain area, therefore, can be used to map that region.

"Cassini data showed a similar amount of ENAs from the tail and the nose," said Opher. "Suggesting that the size of both sides was similar, which means a short tail."

An IBEX paper from 2013 also described as a two-lobed shape down the tail. Opher and Drake suggest that the lobes observed might actually have been the two jets with interstellar, non-heliospheric material in between. The paper on the IBEX results, however, interpreted the heliosphere as having a long tail. With such previous results, Opher expects the new model to be controversial.

"This is going to be heavily, heavily debated," she said, pointing out that many scientists work from the traditional comet-shaped model of the heliosphere. But, said Opher, the out-of-the-box results coming from spacecraft observations demand a similarly unconventional explanation.

In the meantime, these newly postulated jets look like baby versions of the super-powered jets that exist around exotic objects like black holes and pulsars. They are also seen around proto-stars just being born. Being able to study these jets in our own backyard provides a homegrown laboratory in which to study a structure that is seen everywhere in the universe.

"If we're right about all of this, it gives us a local test bed for exploring some very important physics," said Drake.


Thanks for being here;
We need your help. The SpaceDaily news network continues to grow but revenues have never been harder to maintain.

With the rise of Ad Blockers, and Facebook - our traditional revenue sources via quality network advertising continues to decline. And unlike so many other news sites, we don't have a paywall - with those annoying usernames and passwords.

Our news coverage takes time and effort to publish 365 days a year.

If you find our news sites informative and useful then please consider becoming a regular supporter or for now make a one off contribution.
SpaceDaily Contributor
$5 Billed Once


credit card or paypal
SpaceDaily Monthly Supporter
$5 Billed Monthly


paypal only


.


Related Links
Interstellar Boundary Explorer
Solar Science News at SpaceDaily






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




Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News





SOLAR SCIENCE
The sun has more impact on the climate in cool periods
Aarhus, Denmark (SPX) Mar 02, 2015
The activity of the Sun is an important factor in the complex interaction that controls our climate. New research now shows that the impact of the Sun is not constant over time, but has greater significance when the Earth is cooler. There has been much discussion as to whether variations in the strength of the Sun have played a role in triggering climate change in the past, but more and mo ... read more


SOLAR SCIENCE
Core work: Iron vapor gives clues to formation of Earth and moon

Application of laser microprobe technology to Apollo samples refines lunar impact history

NASA releases video of the far side of the Moon

US Issuing Licenses for Mineral Mining on Moon

SOLAR SCIENCE
Curiosity confirms methane in Mars' atmosphere

New Flight Software to Fix Memory Issues is Onboard Rover

NASA's Curiosity Mars Rover Drills at 'Telegraph Peak'

How Can We Protect Mars From Earth, While Searching For Life

SOLAR SCIENCE
Diamantino Sforza - Gentleman Farmer of Prince George's County

Water pools in US astronaut's helmet after spacewalk

Korean tech start-ups offer life beyond Samsung

Fast visas and dim sum: Spain seeks to attract Chinese tourists

SOLAR SCIENCE
Argentina welcomes first Chinese satellite tracking station outside China

More Astronauts for China

China launches the FY-2 08 meteorological satellite successfully

China's Long March puts satellite in orbit on 200th launch

SOLAR SCIENCE
US astronauts speed through spacewalk at orbiting lab

Watching Alloys Change from Liquid to Solid Could Lead to Better Metals

NASA Hopes to Continue Cooperation on ISS Until 2024

Russia to use International Space Station till 2024

SOLAR SCIENCE
Next Launch of Heavy Angara-5 Rocket Due Next Year

SES Announces Two Launch Agreements With SpaceX

Soyuz-2.1a Rocket Takes Military Satellite to Designated Orbit

Russia's Vostochny Cosmodrome Construction Reaches Home Stretch

SOLAR SCIENCE
Planets Can Alter Each Other's Climates over Eons

The mystery of cosmic oceans and dunes

Laser 'ruler' holds promise for hunting exoplanets

Scientists predict earth-like planets around most stars

SOLAR SCIENCE
Australia researchers create 'world first' 3D-printed jet engines

Debris Fills Orbit as US Satellite Explodes

Watching bonds form using femtosecond X-ray liquidography

New research predicts when, how materials will act




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news 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 All images and articles appearing on Space Media Network have been edited or digitally altered in some way. Any requests to remove copyright material will be acted upon in a timely and appropriate manner. Any attempt to extort money from Space Media Network will be ignored and reported to Australian Law Enforcement Agencies as a potential case of financial fraud involving the use of a telephonic carriage device or postal service.