. Medical and Hospital News .




.
TECH SPACE
Lawrence Livermore research identifies precise measurement of radiation damage
by Anne M Stark for LLNL News
Livermore CA (SPX) Jun 11, 2012

Model of the electronic wake (blue surfaces) generated by an energetic proton (red sphere) traveling in an aluminum crystal (yellow spheres). The resulting change in electronic density is responsible for modification of chemical bonds between the atoms and consequently for a change in their interactions.

Lawrence Livermore National Laboratory researchers have for the first time simulated and quantified the early stages of radiation damage that will occur in a given material. "A full understanding of the early stages of the radiation damage process provides knowledge and tools to manipulate them to our advantage," said Alfredo Correa, a Lawrence Fellow from Lawrence Livermore National Laboratory in the Quantum Simulations Group.

Nuclear radiation leads to highly energetic ions that can penetrate large distances within matter, often leading to the accumulation of damage sites as the ions pass through the material.

During this process, the energetic ions eventually slow down as energy is lost by friction with the materials' electrons. Like a speedboat moving through a calm body of water, the passage of fast ions creates a disturbance in the electron density in the shape of a wake.

Correa along with colleagues Alfredo Caro from Los Alamos National Laboratory, Jorge Kohanoff from the the UK and Emilio Artacho and Daniel Sanchez-Portal from Spain, have directly simulated this quantum friction of the electrons in a real material for the very first time.

The team simulated the passage of a fast proton through crystalline aluminum. By accounting for the energy absorbed by the electrons and the magnitude of the impulse given to the aluminum atoms, the team was able to predict the rate at which the proton is stopped and the amount of momentum transferred.

This is a precise atomistic simulation of the deposited energy and momentum, which is ultimately responsible for the damage that is produced in the material.

The new method opens up the possibility to predict the effect of radiation on a wide range of complex materials. The research not only applies to materials for nuclear applications, but also for materials related to the space industry, and new processing techniques for lasers and highly energetic ions.

In biology and medicine, it also may contribute to understanding the effects of radiation on living tissues, both for damage and therapeutic processes.

In a broader sense, the new simulation capability represents the first step toward a unified method for the simultaneous simulation of electron and ion dynamics. The research is highlighted on the cover of the May 25 issue of Physical Review Letters.

Related Links
Lawrence Livermore National Laboratory
Space Technology News - Applications and Research




.
.
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



TECH SPACE
Commonly used painkillers may protect against skin cancer
London, UK (SPX) Jun 04, 2012
A new study suggests that aspirin and other similar painkillers may help protect against skin cancer. Published early online in CANCER, a peer-reviewed journal of the American Cancer Society, the findings indicate that skin cancer prevention may be added to the benefits of these commonly used medications. Previous studies suggest that taking nonsteroidal anti-inflammatory drugs, or NSAIDs, ... read more


TECH SPACE
Japan agency sorry for comparing radiation to wife

Lithuania launches regional nuclear safety watchdog

Italy's quake-struck north tries to reassure tourists

Ferrari auction to raise money for Italy quake

TECH SPACE
Boeing, Raytheon and Harris to Pursue GPS Control Segment Sustainment Contract

Revamped Google maps goes offline for mobile

USAF Awards Lockheed Martin GPS III Flight Operations Contract

Lockheed Martin Completes Navigation Payload Milestone For GPS III Prototype

TECH SPACE
Fossil discovery sheds new light on evolutionary history of higher primates

Monkey lip smacks provide new insights into the evolution of human speech

Stanford psychologists aim to help computers understand you better

New Mini-sensor Measures Magnetic Field of the Brain

TECH SPACE
India boosts sanctuaries for endangered tiger

A different drummer: Stanford engineers discover neural rhythms drive physical movement

Some butterfly species particularly vulnerable to climate change

Study suggests expanding the genetic alphabet may be easier than previously thought

TECH SPACE
New study shows why swine flu virus develops drug resistance

China faces 'serious' epidemic of drug-resistant TB

50-year cholera mystery solved

China faces 'serious' epidemic of drug-resistant TB

TECH SPACE
Top China dissident found dead

China allows autopsy of dead dissident: family

China to tighten Internet control with new rules

China rounds up activists on Tiananmen anniversary

TECH SPACE
Incidence, types of marine piracy studied

Iran navy saves US freighter from pirates: report

Jailing of marines hitting anti-piracy efforts: Italy

Armed N.Koreans kidnap Chinese sailors: reports

TECH SPACE
Walker's World: The euro's unknowns

Outside View: EU bailout is no cure

Expectations for the Rio Summit, in quotes

China revives key economic reform amid transition


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 1995-2012 - 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