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




TIME AND SPACE
How to spawn an 'exceptional ring'
by Staff Writers
Boston MA (SPX) Sep 14, 2015


A schematic drawing of how a ring of exceptional points (shown in white) can be spawned from a Dirac point (a dot), and thus change the dispersion from the normal, widely known conical shape into an exotic lantern-like shape. Image courtesy of the researchers.

The Dirac cone, named after British physicist Paul Dirac, started as a concept in particle and high-energy physics and has recently became important in research in condensed matter physics and material science. It has since been found to describe aspects of graphene, a two dimensional form of carbon, suggesting the possibility of applications across various fields.

Now physicists at MIT have found another unusual phenomenon produced by the Dirac cone: It can spawn a phenomenon described as a "ring of exceptional points." This connects two fields of research in physics and may have applications in building powerful lasers, precise optical sensors, and other devices.

The results are published this week in the journal Nature by MIT postdoc Bo Zhen, Yale University postdoc Chia Wei Hsu, MIT physics professors Marin Soljaci? and John Joannopoulos, and five others.

This work represents "the first experimental demonstration of a ring of exceptional points," Zhen says, and is the first study that relates research in exceptional points with the physical concepts of parity-time symmetry and Dirac cones.

Individual exceptional points are a peculiar phenomenon unique to an unusual class of physical systems that can lead to counterintuitive phenomena. For example, around these points, opaque materials may seem more transparent, and light may be transmitted only in one direction. However, the practical usefulness of these properties is limited by absorption loss introduced in the materials.

The MIT team used a nanoengineered material called a photonic crystal to produce the exceptional ring. This new ring of exceptional points is different from those studied by other groups, making it potentially more practical, the researchers say.

"Instead of absorption loss, we adopt a different loss mechanism - radiation loss - which does not affect the device performance," Zhen says. "In fact, radiation loss is useful and is necessary in devices like lasers."

This phenomenon could enable creation of new kinds of optical systems with novel features, the MIT team says.

"One important possible application of this work is in creating a more powerful laser system than existing technologies allow," Soljaci? says. To build a more powerful laser requires a bigger lasing area, but that introduces more unwanted "modes" for light, which compete for power, limiting the final output.

"Photonic crystal surface-emitting lasers are a very promising candidate for the next generation of high-quality, high-power compact laser systems," Soljaci? says, "and we estimate we can improve the output power limit of such lasers by a factor of at least 10."

"Our system could also be used for high-precision detectors for biological or chemical materials, because of its extreme sensitivity," Hsu says. This improved sensitivity is due to another exotic property of the exceptional points: Their response to perturbations is not linear to the perturbation strength.

Normally, Hsu says, it becomes very difficult to detect a substance when its concentration is low. When the concentration of the target substance is reduced by a million times, the overall signal also decreases by a million times, which can make it too small to detect.

"But at an exceptional point, it's not linear anymore," Hsu says, "and the signal goes down by only 1,000 times, providing a much bigger response that can now be detected."

The research team also included Yuichi Igarashi of NEC Corp. in Japan and MIT research scientist Ling Lu, postdoc Ido Kaminer, Harvard University graduate student Adi Pick, and Song-Liang Chua at DSO National Laboratory in Singapore. The work was supported, in part, by the Army Research Office through MIT's Institute for Soldier Nanotechnologies, the National Science Foundation, and the Department of Energy.


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
Massachusetts Institute of Technology
Understanding Time and Space






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




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





TIME AND SPACE
Untangling the mechanics of knots
Boston MA (SPX) Sep 09, 2015
Got rope? Then try this experiment: Cross both ends, left over right, then bring the left end under and out, as if tying a pair of shoelaces. If you repeat this sequence, you get what's called a "granny" knot. If, instead, you cross both ends again, this time right over left, you've created a sturdier "reef" knot. The configuration, or "topology," of a knot determines its stiffness. For ex ... read more


TIME AND SPACE
Russia Eyes Moon for Hi-Tech Lunar Base

Russia Gets Ready for New Moon Landing

ASU chosen to lead lunar CubeSat mission

Russia's moon landing plan hindered by financial distress

TIME AND SPACE
ASU instruments help scientists probe ancient Mars atmosphere

What Happened to Early Mars' Atmosphere

Opportunity brushes a rock and conducts in-situ studies

Destination Red Planet: Will Billionaires Fund a Private Mars Colony

TIME AND SPACE
New Life for Old Buddy: Russia Tests Renewed Soyuz-MS Spacecraft

Opportunity found in lack of diversity in US tech sector

Boeing Revamps Production Facility for Starliner Flights

In Virginia, TechShop lets 'makers' tinker, innovate

TIME AND SPACE
Progress for Tiangong 2

China rocket parts hit villager's home: police, media

China's "sky eyes" help protect world heritage Angkor Wat

China's space exploration potential has US chasing its own tail

TIME AND SPACE
Russian ISS Crew's Next Spacewalk Planned for February 2016

Mogensen begins busy ISS tour

Soyuz rocket with three astronauts launches towards ISS

Soyuz Heads to Space Station with New Crew

TIME AND SPACE
US Navy to Launch Folding-Fin Ground Attack Rocket on Scientific Mission

US Launches Atlas V Rocket With Navy Communications Satellite After Delay

FCube facility enters operations with fueling of Soyuz Fregat upper stage

SpaceX delays next launch after blast

TIME AND SPACE
Earth observations show how nitrogen may be detected on exoplanets, aiding search for life

Distant planet's interior chemistry may differ from our own

Earth's mineralogy unique in the cosmos

A new model of gas giant planet formation

TIME AND SPACE
A close-up view of materials as they stretch or compress

A new type of Au deposits: The decratonic gold deposits

Bubble, bubble ... boiling on the double

Billie Holiday to return to New York stage -- by hologram




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.