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




TECH SPACE
Thanks for the memory: More room for data in 'phase-change' material
by Staff Writers
Baltimore MD (SPX) May 08, 2012


This illustration depicts the shape of diamond tips used to apply pressure that uncovered important new properties in the memory medium GST. The inset represents the atomic structure of amorphous GST. Credit: Ming Xu/JHU.

A team led by Johns Hopkins engineers has discovered some previously unknown properties of a common memory material, paving the way for development of new forms of memory drives, movie discs and computer systems that retain data more quickly, last longer and allow far more capacity than current data storage media.

The work was reported in the online edition of Proceedings of the National Academy of Sciences.

The research focused on an inexpensive phase-change memory alloy composed of germanium, antimony and tellurium, called GST for short. The material is already used in rewritable optical media, including CD-RW and DVD-RW discs. But by using diamond-tipped tools to apply pressure to the materials, the Johns Hopkins-led team uncovered new electrical resistance characteristics that could make GST even more useful to the computer and electronics industries.

"This phase-change memory is more stable than the material used in the current flash drives. It works 100 times faster and is rewritable about 100,000 times," said the study's lead author, Ming Xu, a doctoral student in the Department of Materials Science and Engineering in Johns Hopkins' Whiting School of Engineering. "Within about five years, it could also be used to replace hard drives in computers and give them more memory."

GST is called a phase-change material because, when exposed to heat, areas of GST can change from an amorphous state, in which the atoms lack an ordered arrangement, to a crystalline state, in which the atoms are neatly lined up in a long-range order. In its amorphous state, GST is more resistant to electric current.

In its crystalline state, it is less resistant. The two phases also reflect light differently, allowing the surface of a DVD to be read by A tiny laser. The two states correspond to one and zero, the language of computers.

Although this phase-change material has been used for at least two decades, the precise mechanics of this switch from one state to another have remained something of a mystery because it happens so quickly - in nanoseconds - when the material is heated.

To solve this mystery, Xu and his team used another method to trigger the change more gradually. The researchers used two diamond tips to compress the material.

They employed a process called X-ray diffraction and a computer simulation to document what was happening to the material at the atomic level. The researchers found that they could "tune" the electrical resistivity of the material during the time between its change from amorphous to crystalline form.

"Instead of going from black to white, it's like finding shades or a shade of gray in between," said Xu's doctoral adviser, En Ma, a professor of materials science and engineering, and a co-author of the PNAS paper. "By having a wide range of resistance, you can have a lot more control. If you have multiple states, you can store a lot more data."

Other co-authors of the paper were Y. Q. Cheng of Johns Hopkins and the Oak Ridge National Laboratory in Tennessee; L. Wang of the Carnegie Institution of Washington in Argonne, Ill., and Jilin University in China; H. W. Sheng of George Mason University in Fairfax, Va.; Y. Meng and W. G. Wang of the Carnegie Institution of Washington; and X. D. Han of Beijing University of Technology in China.

.


Related Links
En Ma's website
Johns Hopkins Department of Materials Science and Engineering
Space Technology News - Applications and Research






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
Research breakthrough takes supercomputing out of the lab
Toronto, Canada (SPX) May 01, 2012
In the age of high-speed computing, the photon is king. However, producing the finely tuned particles of light is a complex and time-consuming process, until now. Thanks to the work by a team of engineers led by Professor Amr Helmy of The Edward S. Rogers Sr. Department of Electrical and Computer Engineering, a novel solution has been identified that will make the production of special class of ... read more


TECH SPACE
Perigee "Super Moon" On May 5-6

India's second moon mission Chandrayaan-2 to wait

European Google Lunar X Prize Teams Call For Science Payloads

Russia to Send Manned Mission to Moon by 2030

TECH SPACE
Antarctic stay to mimic Mars mission

Mars Rover Opportunity Hits Paydirt At Endeavour

Ancient Volcanic Blast Provides More Evidence of Water on Early Mars

Opportunity Getting Ready To Leave Her Winter Perch

TECH SPACE
Boeing Completes Full Landing Test of Crew Space Transportation Spacecraft

How will the US biotechnology industry benefit from new patent laws?

Space -- the next frontier for Hillary Clinton?

Company to Create 'Gas Stations' in Space

TECH SPACE
China's Lunar Docking

Shenzhou-9 may take female astronaut to space

China to launch 100 satellites during 2011-15

Three for Tiangong

TECH SPACE
Dancing Droplets Rock Out On Space Station

Space Station's Robotic Crew Member Designed to Look, Move and Work Like a Human

Expedition 30 Lands in Kazakhstan

Three astronauts to land from ISS Friday

TECH SPACE
SpaceX boss admits sleep elusive before ISS launch

Air Force launches 2nd advanced satellite

A trio of Ariane 5 launchers are now at the Spaceport

United Launch Alliance Urges IAM Members to Vote in Favor of New Contract

TECH SPACE
Looking for Earths by looking for Jupiters

Some giant planets in other systems most likely to be alone

Four white dwarf stars caught in the act of consuming 'earth-like' exoplanets

Three Earthlike planets identified by Cornell astronomers

TECH SPACE
Life-size, 3D hologram-like telepods may revolutionize videoconferencing

Fewer toxic toys and textiles in EU stores

Colors burst into contemporary architecture

Flying 3D eye-bots




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