. 24/7 Space News .
CHIP TECH
Scientists paint quantum electronics with beams of light
by Staff Writers
Chicago IL (SPX) Oct 13, 2015


This is a picture of an artist's rendition of optically-defined quantum circuits in a topological insulator. Image courtesy Peter Allen. For a larger version of this image please go here.

A team of scientists from the University of Chicago and the Pennsylvania State University have accidentally discovered a new way of using light to draw and erase quantum-mechanical circuits in a unique class of materials called topological insulators.

In contrast to using advanced nanofabrication facilities based on chemical processing of materials, this flexible technique allows for rewritable 'optical fabrication' of devices. This finding is likely to spawn new developments in emerging technologies such as low-power electronics based on the spin of electrons or ultrafast quantum computers.

The research is published in the American Association for the Advancement of Science's new online journal Science Advances, where it is featured on the journal's front page.

"This observation came as a complete surprise," said David D. Awschalom, Liew Family Professor and deputy director in the Institute of Molecular Engineering at UChicago, and one of two lead researchers on the project. "It's one of those rare moments in experimental science where a seemingly random event - turning on the room lights - generated unexpected effects with potentially important impacts in science and technology."

The electrons in topological insulators have unique quantum properties that many scientists believe will be useful for developing spin-based electronics and quantum computers. However, making even the simplest experimental circuits with these materials has proved difficult because traditional semiconductor engineering techniques tend to destroy their fragile quantum properties. Even a brief exposure to air can reduce their quality.

In Science Advances, the researchers report the discovery of an optical effect that allows them to "tune" the energy of electrons in these materials using light, and without ever having to touch the material itself. They have used it to draw and erase p-n junctions - one of the central components of a transistor - in a topological insulator for the first time.

Like many advances in science, the path to this discovery had an unexpected twist.

"To be honest, we were trying to study something completely different," said Andrew Yeats, a graduate student in Awschalom's laboratory and the paper's lead author. "There was a slow drift in our measurements that we traced to a particular type of fluorescent lights in our lab. At first we were glad to be rid of it, and then it struck us - our room lights were doing something that people work very hard to do in these materials."

The researchers went back to Bulley and Andrews, the contractor that renovated the lab space for more information about the lights. "I've never had a client so obsessed with the overhead lighting," said Frank Floss, superintendent for Bulley and Andrews Construction. "I could have never imagined how important it would turn out to be."

The researchers found that the surface of strontium titanate, the substrate material on which they had grown their samples, becomes electrically polarized when exposed to ultraviolet light, and their room lights happened to emit at just the right wavelength. The electric field from the polarized strontium titanate was leaking into the topological insulator layer, changing its electronic properties.

Awschalom and his colleagues found that by intentionally focusing beams of light on their samples, they could draw electronic structures that persisted long after the light was removed.

"It's like having a sort of quantum etch-a-sketch in our lab," he said. They also found that bright red light counteracted the effect of the ultraviolet light, allowing them to both write and erase. "Instead of spending weeks in the cleanroom and potentially contaminating our materials," said Awschalom, "now we can sketch and measure devices for our experiments in real time. When we're done, we just erase it and make something else. We can do this in less than a second."

To test whether the new technique might interfere with the unique properties of topological insulators, the team measured their samples in high magnetic fields. They found promising signatures of an effect called weak anti-localization, which arises from quantum interference between the different simultaneous paths electrons can take through a material when they behave as waves.

"One exciting aspect of this work is that it's noninvasive" said Nitin Samarth, Professor and Downsbrough Head of Physics at Penn State, and a lead researcher on the project. "Since the electrical polarization occurs in an adjacent material, and the effect persists in the dark, the topological insulator remains relatively undisturbed. With these fragile quantum materials, sometimes you have to use a light touch."

To better understand the physics behind the effect, the researchers conducted a number of control measurements which showed that the optical effect is not unique to topological insulators, but that it can act on other materials grown on strontium titanate as well.

"In a way, the most exciting aspect of this work is that it should be applicable to a wide range of nanoscale materials such as complex oxides, graphene, and transition metal dichalcogenides," said Awschalom.

"It's not just that it's faster and easier. This effect could allow electrical tuning of materials in a wide range of optical, magnetic and spectroscopic experiments where electrical contacts are extremely difficult or simply impossible."


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
ARC Centre of Excellence for Electromaterials Science
Computer Chip Architecture, Technology and Manufacture
Nano Technology News From SpaceMart.com






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

Previous Report
CHIP TECH
Room temperature magnetic skyrmions, a new type of digital memory
Davis CA (SPX) Oct 09, 2015
An exotic, swirling object with the sci-fi name of a "magnetic skyrmion" could be the future of nanoelectronics and memory storage. Physicists at UC Davis and the National Institute of Standards and Technology (NIST) have now succeeded in making magnetic skyrmions, formerly found at temperatures close to absolute zero, at room temperature. "This is a potentially new way to store informatio ... read more


CHIP TECH
Lunar Pox

Space startup confirms plans for robotic moon landings

Asteroids found to be the moon's main 'water supply'

Russian scientist hope to get rocket fuel, water, oxygen from Lunar ice

CHIP TECH
Lakes on Mars - SETI Editorial

NASA outlines obstacles to putting a human on Mars

ASU Mars images star in 'The Martian'

Mars colonisation still far off: Amitabh Ghosh

CHIP TECH
UTMB developing guidelines for commercial space travel

Dog smartphone and dancing humanoids on show at HK Fair

Aerojet completes major review of Orion subsystems

They're Loving It: Cheeseburgers Will Be Added to ISS Menu

CHIP TECH
Latest Mars film bespeaks potential of China-U.S. space cooperation

Exhibition on "father of Chinese rocketry" opens in U.S.

The First Meeting of the U.S.-China Space Dialogue

China's new carrier rocket succeeds in 1st trip

CHIP TECH
International Space Agencies Meet to Advance Space Exploration

Meet the International Docking Adapter

NASA extends Boeing contract for International Space Station

Russian launches cargo spaceship to the ISS

CHIP TECH
Both passengers for next Ariane 5 mission arrive in French Guiana

Arianespace signs ARSAT to launch a new satellite for Argentina

Ariane 5 orbits Sky Muster and ARSAT-2

A satellite launcher for the Middle East

CHIP TECH
Hubble Telescope Spots Mysterious Space Objects

Exoplanet Anniversary: From Zero to Thousands in 20 Years

Mysterious ripples found racing through planet-forming disc

The Most Stable Source of Light in the World

CHIP TECH
Using optical fiber to generate a two-micron laser

Dielectric film has refractive index close to air

Northrop Grumman upgrading G/ATOR radar system

Raytheon's AESA 360-degree radar moves toward production









The content herein, unless otherwise known to be public domain, are Copyright 1995-2024 - 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. All articles labeled "by Staff Writers" include reports supplied to Space Media Network by industry news wires, PR agencies, corporate press officers and the like. Such articles are individually curated and edited by Space Media Network staff on the basis of the report's information value to our industry and professional readership. 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. General Data Protection Regulation (GDPR) Statement Our advertisers use various cookies and the like to deliver the best ad banner available at one time. All network advertising suppliers have GDPR policies (Legitimate Interest) that conform with EU regulations for data collection. By using our websites you consent to cookie based advertising. If you do not agree with this then you must stop using the websites from May 25, 2018. Privacy Statement. Additional information can be found here at About Us.