Subscribe free to our newsletters via your
. Space Industry and Business News .




NANO TECH
Taming light with graphene
by Staff Writers
Usurbil, Spain (SPX) Jun 26, 2012


This image shows optical nanoimaging of graphene plasmons. The upper panel shows a sketch of the imaging method. A laser illuminated scanning tip launches plasmons on graphene. Detection is by recording the light backscattered from the tip. The lower panel shows optical image of graphene, where the fringes visualize the interference of the graphene plasmons. Credit: nanoGUNE, IQFR-CSIC, ICFO.

Spanish research groups achieve first ever visualizations of light guided with nanometric precision on graphene (a one-atom-thick sheet of carbon atoms). This visualization proves what theoretical physicists have long predicted; that it is possible to trap and manipulate light in a highly efficient way, using graphene as a novel platform for optical information processing and sensing.

Synergies between theoretical proposals from IQFR-CSIC (Madrid), specializations in graphene nano-photonics and nano-optoelectonics at ICFO (Barcelona), and experimental expertise in optical nano-imaging at nanoGUNE (San Sebastian) give rise to these noteworthy results reported in Nature this week in a back-to-back publication alongside a similar study by the group of Dmitry Basov in UCSD in California.

Graphene is a material that, among many other fascinating properties, has an extraordinary optical behavior. Particularly interesting optical properties had been predicted for the case that light couples to so-called plasmons, wave-like excitations that were predicted to exist in the "sea" of conduction electrons of graphene. However, no direct experimental evidence of plasmons in graphene had been shown up to this work.

This is because the wavelength of graphene plasmons is 10 to 100 times smaller than what can be seen with conventional light microscopes. Now, the researchers show the first experimental images of graphene plasmons. They used a so called near-field microscope that uses a sharp tip to convert the illumination light into a nanoscale light spot that provides the extra push needed for the plasmons to be created.

At the same time the tip probes the presence of plasmons (see figure). Rainer Hillenbrand, leader of the nanoGUNE group comments: "Seeing is believing! Our near-field optical images definitely proof the existence of propagating and localized graphene plasmons and allow for a direct measurement of their dramatically reduced wavelength."

As demonstrated by the researchers, graphene plasmons can be used to electrically control light in a similar fashion as is traditionally achieved with electrons in a transistor. These capabilities, which until now were impossible with other existing plasmonic materials, enable new highly efficient nano-scale optical switches which can perform calculations using light instead of electricity.

"With our work we show that graphene is an excellent choice for solving the long-standing and technologically important problem of modulating light at the speeds of today's microchips," says Javier Garcia de Abajo, leader of the IQFR-CSIC group.

In addition, the capability of trapping light in very small volumes could give rise to a new generation of nano-sensors with applications in diverse areas such as medicine and bio-detection, solar cells and light detectors, as well as quantum information processing.

This result literally opens a new field of research and provides a first viable path towards ultrafast tuning of light, which was not possible until now. Frank Koppens, leader of the ICFO group, summarizes: "Graphene is a novel and unique material for plasmonics, truly bridging the fields of nano-electronics and nano-optics".

Optical nano-imaging of gate-tunable graphene plasmons Jianing Chen, Michela Badioli, Pablo Alonso-Gonzalez, Susokin Thongrattanasiri, Florian Huth, Johann Osmond, Marko Spasenovic, Alba Centeno, Amaia Pesquera, Philippe Godignon, Amaia Zurutuza, Nicolas Camara, Javier Garcia de Abajo, Rainer Hillenbrand and Frank Koppens DOI: 10.1038/nature11254

.


Related Links
Elhuyar Fundazioa
Nano Technology News From SpaceMart.com
Computer Chip Architecture, Technology and Manufacture






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








NANO TECH
Graphene is a tunable plasmonic medium
San Diego CA (SPX) Jun 26, 2012
With a beam of infrared light, scientists have sent ripples of electrons along the surface of graphene and demonstrated that they can control the length and height of these oscillations, called plasmons, using a simple electrical circuit. This is the first time anyone has observed plasmons on graphene, sheets of carbon just one atom thick with a host of intriguing physical properties, and an imp ... read more


NANO TECH
India readies upgrade of 'world's cheapest' tablet

Google to talk tablets, TV, social and more

NuSTAR Mission Status Report: Observatory Unfurls its Unique Mast

Toxic legacy in Malaysia rare-earths village

NANO TECH
Lockheed Martin Selected to Manage Major Defense Information Systems Network Operations

Lockheed Martin Selected to Deliver Major Improvements to DoD's ISR Information Sharing Capabilities

Boeing FAB-T Demonstrates Communications with On-orbit AEHF Satellite

Lockheed Martin Completes Environmental Testing on Second US Navy Satellite

NANO TECH
USAF officials announce milestone Atlas V launch

EVE Underflight Calibration Sounding Rocket Launch

ILS and AsiaSat Announce a New Contract for an ILS Proton Launch

A milestone in launcher preparations for Arianespace's fourth Ariane 5 flight of 2012

NANO TECH
Trial by vacuum brings next Galileo satellites closer to launch

Boeing Completes Fifth GPS IIF Satellite for USAF

GPS being used as weather forecast tool

Apple fends off Android challenge with maps, Siri

NANO TECH
Variable camber airfoil: New concept, new challenge

Northrop Grumman F-35 Supplier Quickstep Opens New Facility

Boeing Delivers 100th Modified Chinook to US Army

US seeks to reassure Japan over Osprey aircraft

NANO TECH
Study of phase change materials could lead to better computer memory

Japan's Renesas says major investors to offer aid

Megapixel camera? Try gigapixel

Renesas shareholders approve $630 mn in aid

NANO TECH
Earth observation for us and our planet

NASA Selects Low Cost, High Science Earth Venture Space System

Teledyne to Develop Space-Based Digital Imaging Capability

Satellites show less pollution from deforestation

NANO TECH
Lead poisoning 'epidemic' plagues California condors

New way of monitoring environmental impact could help save rural communities in China

New Software Forecasts Noise Levels in a Street

Red Cross sounds alarm about weapon contamination




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