. Solar Energy News .




.
STELLAR CHEMISTRY
Cluster observes jet braking and plasma heating
by Staff Writers
Paris, France (ESA) Jul 05, 2011

On 3 September 2006, the four Cluster spacecraft were flying in tetrahedral formation through the centre of the magnetotail, about 96 000 km from Earth (roughly one quarter of the Earth-Moon distance). Their particle, electric and magnetic field instruments detected an Earthward-moving plasma flow in the plasma sheet region that was travelling at a maximum speed of more than 800 km/s. Cluster's detection of 'whistler waves' at this time provided the first confirmation that the magnetic field in the plasma was piling up, an effect which led to the heating and acceleration of electrons - a process known as betatron acceleration. More images, movies and captions at ESA

High speed plasma flows, often referred to as jets, are extremely common across the Universe. Such jets are observed in Earth's magnetosphere, in solar flares, and near various objects powered by black holes. New insights into the processes that modify these streams of ionised particles have been provided by rare in situ measurements of plasma flows made by ESA's Cluster spacecraft.

Most visible matter in the Universe exists as plasma, an extremely hot gas in which atoms have been stripped of electrons so that the particles become electrically charged (ionised) and magnetised. How this plasma is heated to create high-energy particles remains a fundamental question, since astrophysical plasmas are often so sparsely populated that collisions between particles are extremely rare.

One of the key energy conversion processes in magnetised plasmas is magnetic reconnection, when the sudden rearrangement of magnetic fields leads to the explosive release of much of the stored magnetic energy. Most of this energy is transferred to the surrounding plasma, causing acceleration and heating of the particles in the plasma.

One place where such processes can be studied by spacecraft is on Earth's night side, where the planet's magnetic field is drawn out into a long tail. In the centre of the tail is a region known as the plasma sheet, which contains plasma with ion temperatures of about 50 million degrees Celsius, making it one of the hottest places in the Universe. When magnetic reconnection occurs in the magnetotail, the plasma sheet is energised and jets are created.

Observations of high energy jets in the plasma sheet provide key insights into the processes that accelerate and heat the plasma. In particular, in situ measurements made by the four Cluster spacecraft have made it possible to pinpoint the mechanism responsible for the acceleration of energetic particles.

One important breakthrough has been made by a team from the Swedish Institute of Space Physics, Uppsala, and Mullard Space Science Laboratory, University College London, who analysed Cluster observations made on 3 September 2006.

At that time, the four satellites were flying in tetrahedral formation through the centre of the magnetotail, about 96 000 km from Earth (roughly one quarter of the Earth-Moon distance). Their particle, electric and magnetic field instruments detected an Earthward-moving plasma flow in the plasma sheet region that was travelling at a maximum speed of more than 800 km/s.

The plasma jet was produced by magnetic reconnection, which occurred when the magnetic field lines from the south and north sides of the plasma sheet suddenly joined together. This focused the particles along the field lines, creating a jet. However, prior to the flow maximum, the team noticed a sharp increase in the strength of the magnetic field and an accompanying increase in electron energy to hundreds of kiloelectronvolts (keV).

The data indicate that the original, fairly "cold" jet was subsequently heated by a separate mechanism similar to friction. At first, the flow's interaction with other particles, together with the enhanced magnetic field, caused the front of the jet to slow down. This led to a pile up of the magnetic field in the plasma, rather like snow piling up in front of a moving snow plough.

Increasing magnetic field strength in this so-called 'flux pileup region' led to further heating of the plasma and acceleration of the electrons - a process known as betatron acceleration. The Cluster data revealed the presence of so-called 'whistler waves', providing the first confirmation that a persistent pile up process was driving the particle acceleration.

"In a more steady state situation, these waves would disperse rather quickly," said Arnaud Masson, Deputy Project Scientist for the Cluster mission. "However, the action of the pile up sustains them, providing a smoking gun of the ongoing pile up process itself."

"In line with previous studies, this new paper confirms that the betatron process takes place after magnetic reconnection, creating high-energy particles in the Earth's magnetotail," Masson added.

"What is remarkable here is how the high resolution time measurements made by the Cluster satellites have enabled the presence of electromagnetic waves and their role in the betatron process to be determined for the first time. The waves play a key role in this process by scattering the particles and effectively enhancing collisions between them, which are otherwise very rare."

The new measurements also provide new insights into plasma jets that occur far beyond our planet.

"In a general astrophysical context, our observations suggest that one can expect particle acceleration anywhere that plasma jets are interacting with the local environment and braking," said Yuri Khotyainsev of the Swedish Institute of Space Physics, lead author of the paper in Physical Review Letters.

"In addition to shocks, particle acceleration and heating will result from the pile up of the magnetic field at the jet fronts," he added. "Our data explain how jets can become more energised when they are far from the original site of magnetic reconnection."

Reference publication: Yu. V. Khotyaintsev, C. M. Cully, A. Vaivads, M. Andre, and C. J. Owen, Plasma Jet Braking: Energy Dissipation and Nonadiabatic Electrons, Physical Review Letters, vol. 106, 165001, 2011, DOI:10.1103/PhysRevLett.106.165001. Related publications: Asano, Y., et al. (2010), Electron acceleration signatures in the magnetotail associated with substorms, J. Geophys. Res., 115, A05215, DOI:10.1029/2009JA014587 M. Ashour-Abdalla, M. El-Alaoui, M. L. Goldstein, M. Zhou, D. Schriver, R. Richard, R. Walker, M. G. Kivelson, K.-J. Hwang, Observations and simulations of non-local acceleration of electrons in magnetotail magnetic reconnection events, Nature Physics, 2011, DOI:10.1038/nphys1903




Related Links
Cluster
Stellar Chemistry, The Universe And All Within It

.
Get Our Free Newsletters Via Email
...
Buy Advertising Editorial Enquiries






. 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



STELLAR CHEMISTRY
Gaining Glimpses of Adolescent Universe from Revolutionary Instrument-on-a-Chip
Greenbelt MD (SPX) Jul 04, 2011
Scientists know what the universe looked like when it was a baby. They know what it looks like today. What they don't know is how it looked in its youth. Thanks to technological advances, however, scientists hope to complete the photo album and provide a picture of how the cosmos developed into the kind of place that could support life like that found on Earth. They plan to gather these ne ... read more


STELLAR CHEMISTRY
Virgin eyes eucalyptus for jet fuel

Biofuels from the sea

Salt-loving microbe provides new enzymes for the production of next-gen biofuels

Wales wood pellet biomass effort advances

STELLAR CHEMISTRY
Scientists develop sensitive skin for robots

Japanese man takes robot piggyback on French landmark

Driving a robot from the Space Station

U.S. shifts focus to multipurpose robots

STELLAR CHEMISTRY
Wind power numbers down in Britain

Wind farm inquiry balanced and reasonable

Power-One Inverters Chosen to Power WindTronics

Sheringham Shoal signs up For WindManager wind farm management system

STELLAR CHEMISTRY
Toyota to cut work at Brazil, Argentina plants

China's BYD, Societe Generale unit end tie-up

Hydrogenics Awarded Hydrogen Fueling Station in Germany

Diesel cars gain traction slowly in US market

STELLAR CHEMISTRY
Pollution risk of CFL bulbs studied

Shell told to withdraw drilling claims in S.African ad

Anger mounts in China over oil spill

China oil spill to have long-term impact: report

STELLAR CHEMISTRY
City dwellers produce as much CO2 as countryside people do

Graphene may gain an 'on-off switch,' adding semiconductor to long list of achievements

Building 2D graphene metamaterials and 1-atom-thick optical devices

Singapore researchers invent broadband graphene polarizer

STELLAR CHEMISTRY
Poor frameworks block African energy plans

Developing world need $1 trillion a year for green tech: UN

Euro Bank launches $385M efficiency fund

US backs Lithuanian energy independence drive: Clinton

STELLAR CHEMISTRY
Using DNA in fight against illegal logging

Brazil revokes Amazon logging permits after deaths

Tropical Birds Return to Harvested Rainforest Areas in Brazil

Analyzing Agroforestry Management


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

The content herein, unless otherwise known to be public domain, are Copyright 1995-2011 - Space Media Network. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. 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