Back home   |   Bookmark   |   Start page   |   Site map    
Services
News
Channels
Home & Family
Leisure
Technology
Business
Science
Site Search
Free email




On a wire or in a fiber, a wave is a wave

TheAllINeed.com
(NC&T/BU) Touted as the next wave of electronics miniaturization, plasmonics describes the movement of SPPs – a type of electromagnetic wave that is bound to a metal surface by its interaction with surface electrons. The emerging technology could provide a bridge between nanoscale electronics and photonics. Conventional electronic devices, in which metal wires carry electrical signals, can be manufactured at the nanoscale but incur long time delays. Photonic – or fiber optic – devices transmit a signal at the speed of light but cannot be miniaturized below a size limit imposed by the wavelength of light that they carry.

Plasmonic devices seem to combine the best of both technologies. Because SPPs are electromagnetic waves they move at near light-speed, but because they ride the surface of wires, it seemed they might circumvent the diffraction limit, which restricts the size of fiber optics.

"We know that these are still essentially electromagnetic waves and therefore they must still obey a diffraction limit," says Rashid Zia, assistant professor of engineering at Brown University. "The key is to define a set of solutions in a way that is analogous to other systems so that we can derive that limit."

Zia and Mark Brongersma, an assistant professor of engineering at Stanford University, set out to find an experiment that could test the limits of plasmonic technology and also shed light on the principles that control this still-mysterious kind of wave.

Young's double slit experiment is usually performed as a demonstration of optical diffraction, although recent variations have also been used to test the quantum behavior of electrons, atoms and even molecules.

Measured intensity of guided polariton waves in the image to the left yields a diffraction similar to that seen in classic optical experiments from 200 years ago. (Photo: Freedom-2)
In the classic double slit experiment, students shine a light onto a screen through an opaque barrier with two slits in it. When one slit is covered, the pattern of light is brightest directly in front of the slit. When light passes through both slits, a series of light and dark lines appear instead. The light forms a bright line between the slits, where the peaks of the waves reinforce one another and a distinct pattern of darker lines where the peaks and valleys cancel each other out. It's an elegant demonstration of the wave side of light's dual nature.

In their experiment, Zia and Brongersma generated an SPP and passed it across two narrow bridges of gold film on a glass slide. As the waves exited onto a broad sheet of gold film, they diffracted to create interference patterns analogous to those seen in Young's double slit experiment. Using a simple analytical model for the way SPPs are guided along individual metal stripes, the researchers predicted the pattern of diffraction they would see.

Because SPPs are not in the spectrum of visible light, they don't just show up on a screen. Zia and Brongersma precisely measured the diffraction pattern using a photon scanning tunneling microscope. The pattern they saw closely matched what they predicted using their proposed framework, which is based on an analogy to conventional optics.

The results of this experiment may disappoint some researchers who have hoped that SPPs traveling along metal waveguides could allow circuit design to move seamlessly from electronics to photonics. Instead, Zia sees developing – and challenging – a comprehensive theory as the first step toward devising structures uniquely suited to controlling the movement of SPPs.

"You can couple stripes, you can make slits, you can make all sorts of other geometries that might work," said Zia. "But to see that potential through, you have to have a clear analytical theory and a way to test it."

Grants from the Department of Defense/Air Force Office of Scientific Research and the National Science Foundation supported this research.

About the Author
©2006 All rights reserved

More articles
Stable quantum computing
On-chip optics
Triple-scoop baryon
Electron on video
Ultra-cold gas
Black holes
Giant magnetocaloric materials
Building nanodevices
Free-electron laser
New form of matter
Mother-of-pearl:
Sand wave behaviour
New electron wave
Killer electrons in space
A wave is a wave
Odd behavior in superconductors
Ultra-sharp glimpse of electrons
Opposites interfere
Quantum super computers
Magnet to tune magnet
Quotes
A smart man covers his butt, a wise man simply leaves his pants on.
C.D. Bailey

History, here I come!
Edmund Blackadder

How many frickin times do I have to say, In the form of a question, people?!?
Alex Trebek


Writers
If you are a writer and want to see your article published at Theallineed.com, just click here to submit.

Info
Today...
In the news...
Poverty reflected in children's schools as well as in the home
The report, which is based on a survey of 7,600 schools in 11 countries in Latin America, Asia and North Africa, reveals a particularly glaring gap between the resources available to urban and rural schools.
What's your favorite fast food?
Hamburger
Fried chicken
Macaronni
Pizza
Hot dogs
Other
 
Things to ponder
If a stealth bomber crashes in a forest, will it make a sound?

Did you know...
Rats multiply so quickly that in 18 months, two rats could have over a million descendants.

Quote of the day
Many a small thing has been made large by the right kind of advertising.
Mark Twain

Featured article
7 rules you must follow when ordering furniture online
The World Wide Web is where you will find an excellent choice of furniture. Online store stock leading brands, antiques, as well as designer pieces. Since online stores do not have to worry about physical space they are...

 
© 2002 - 2007 Lexur