Subscribe free to our newsletters via your




TECH SPACE
To conduct, or to insulate? That is the question
by Staff Writers
Cambridge UK (SPX) Jul 10, 2015


Suchitra Sebastian.

A new study has discovered mysterious behaviour of a material that acts like an insulator in certain measurements, but simultaneously acts like a conductor in others. In an insulator, electrons are largely stuck in one place, while in a conductor, the electrons flow freely. The results, published in the journal Science, challenge current understanding of how materials behave.

Conductors, such as metals, conduct electricity, while insulators, such as rubber or glass, prevent or block the flow of electricity. But by tracing the path that electrons follow as they move through a material, researchers led by the University of Cambridge found that it is possible for a single material to display dual metal-insulator properties at once - although at the very lowest temperatures, it completely disobeys the rules that govern conventional metals.

While it's not known exactly what's causing this mysterious behaviour, one possibility is the existence of a potential third phase which is neither insulator nor conductor.

The duelling metal-insulator properties were observed throughout the interior of the material, called samarium hexaboride (SmB6). There are other recently-discovered materials which behave both as a conductor and an insulator, but they are structured like a sandwich, so the surface behaves differently from the bulk. But the new study found that in SmB6, the bulk itself can be both conductor and insulator simultaneously.

"The discovery of dual metal-insulator behaviour in a single material has the potential to overturn decades of conventional wisdom regarding the fundamental dichotomy between metals and insulators," said Dr Suchitra Sebastian of the University's Cavendish Laboratory, who led the research.

In order to learn more about SmB6 and various other materials, Sebastian and her colleagues traced the path that the electrons take as they move through the material: the geometrical surface traced by the orbits of the electrons leads to a construction which is known as a Fermi surface.

In order to find the Fermi surface, the researchers used a technique based on measurements of quantum oscillations, which measure various properties of a material in the presence of a high magnetic field to get an accurate 'fingerprint' of the material.

For quantum oscillations to be observed, the materials must be as close to pure as possible, so that there are minimal defects for the electrons to bump into. Key experiments for the research were conducted at the National High Magnetic Field Laboratory in Tallahassee, Florida.

SmB6 belongs to the class of materials called Kondo insulators, which are close to the border between insulating and conducting behaviour. Kondo insulators are part of a larger group of materials called heavy fermion materials, in which complex physics arises from an interplay of two types of electrons: highly localised 'f' electrons, and 'd' electrons, which have larger orbits. In the case of SmB6, correlations between these two types of electrons result in insulating behaviour.

"It's a dichotomy," said Sebastian. "The high electrical resistance of SmB6 reveals its insulating behaviour, but the Fermi surface we observed was that of a good metal."

But the mystery didn't end there. At the very lowest temperatures, approaching 0 degrees Kelvin (-273 Celsius), it became clear that the quantum oscillations for SmB6 are not characteristic of a conventional metal. In metals, the amplitude of quantum oscillations grows and then levels off as the temperature is lowered. Strangely, in the case of SmB6, the amplitude of quantum oscillations continues to grow dramatically as the temperature is lowered, violating the rules that govern conventional metals.

The researchers considered several reasons for this peculiar behaviour: it could be a novel phase, neither insulator nor conductor; it could be fluctuating back and forth between the two; or because SmB6 has a very small 'gap' between insulating and conducting behaviour, perhaps the electrons are capable of jumping that gap.

"The crossover region between two different phases - magnetic and non-magnetic, for example - is where the really interesting physics happens," said Sebastian. "Because this material is close to the crossover region between insulator and conductor, we found it displays some really strange properties - we're exploring the possibility that it's a new quantum phase."


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
University of Cambridge
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
Nanospiked bacteria are the brightest hard X-ray emitters
Mumbai, India (SPX) Jul 10, 2015
In a step that overturns traditional assumptions and practice, researchers at the Tata Institute of Fundamental Research, Mumbai and Institute for Plasma Research, Gandhi Nagar have fashioned bacteria to emit intense, hard x-ray radiation. When one thinks of hard x-rays and bacteria it is usually that the bacteria are at the receiving end of the x-ray source - being imaged, irradiated for ... read more


TECH SPACE
Crash Test Assesses Plane Emergency Locator Transmitters

Nepal quake: Flat owners baulk at return to high-life

We're headed for Titanic-like crash, climate talks hear

Pope takes message to defend poor, environment to Bolivia

TECH SPACE
China's Beidou navigation system more resistant to jamming

Russian, Chinese Navigation Systems to Accommodate BRICS Members

Russia, India Cooperate on Space Exploration, Glonass Satellite System

Global Positioning System: A Generation of Service to the World

TECH SPACE
Neuroscientists establish brain-to-brain networks in primates, rodents

Researchers find the organization of the brain is perfect

World's oldest man dies at 112 in Japan

Revised view of brain circuit reveals how we avoid powerful odors

TECH SPACE
The bizarre mating habits of flatworms

Plant's sonar-bouncing leaves attract bats -- and their poo

Unraveling iridescence

Bats do it, dolphins do it - now humans can do it, too

TECH SPACE
Study explains how dengue virus adapts as it travels

As blacklegged ticks migrate, Lyme disease follows

Scientists, feds aim to curb spread of brucellosis in Yellowstone

Five-year window for preventing AIDS rebound: experts

TECH SPACE
China firm to punish 'unscheduled' pregnancies: report

Dalai Lama birthday celebrations draw support, protests in US

Millions of silver pieces for China's official Christians

Chinese tourists boost Thai economy but stir outrage

TECH SPACE
Piracy, other maritime crimes rise in Southeast Asia

Mexico army ordered soldiers to kill criminals: NGO

Malaysian navy shadows tanker, urges hijackers to give up

Polish bootcamp trains security contractors for mission impossible

TECH SPACE
China consumer inflation rate rises to 1.4% in June: govt

World Bank removes critical section from China report

China brokers to invest $19 mn to curb market plunge

China manufacturing sees slight pick-up in June




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.