Self-Powered Silicon Laser Chips Alabama

A new method of turning waste heat into electrical power might speed up communications inside computers -- and mark another advance in the field of silicon photonics.

Local Companies

Ben Jones CS
(251) 509-4276
Spanish Fort, AL
Skyward PC
205-419-0605
6919 Hwy. 119 South
Alabaster, AL
AT&T Global Network Services
(334) 299-0105
102 N Killebrew
Newton, AL
Afl Network Services
(205) 943-9033
232 Oxmoor Cir
Birmingham, AL
Bright House Networks
(205) 599-5655
Birmingham, AL
Bright House Networks
(334) 687-0809
1060 Fort Browder
Eufaula, AL
Broadband Network Services
(251) 964-7182
Foley, AL
Harbor Network Services
(251) 928-5949
338 Fairhope Ave
Fairhope, AL
Southern Network Services
(205) 278-7234
3620 8th Ave S
Birmingham, AL
Broadband Network Services
(251) 964-7181
30105 State Highway 59
Loxley, AL


Self-Powered Silicon Laser Chips

provided by: 


Bahram Jalali, an electrical engineering professor at UCLA, has demonstrated a way to reduce the energy needs in silicon laser chips, which could make them more commercially feasible for optical computing applications. (Courtesy of UCLA's Henry Samueli School of Engineering and Applied Science.)

A computer scientist at UCLA has transformed one power-hungry component of a silicon laser into a generator of energy -- which could help engineers trying to incorporate faster optical elements into commercial processors.

"Not only are we not dumping energy in, we're actually recovering it," says Bahram Jalali, a professor of electrical engineering at UCLA's Henry Samueli School of Engineering and Applied Science "It sounds too good to be true, but it is true."

As computer chip makers pack more and more transistors onto a silicon chip, they're running into a fundamental limit: how much data they can push out of the chip, or from one motherboard to another, over copper wires. As they increase the power and amount of data, electrical resistance builds up -- until the wires hit their speed limit.

Telecommunications companies overcame this problem years ago when they replaced copper wires with beams of light carried through glass fibers in long-distance communications. Now chip makers such as Intel are building tiny versions of these faster systems, by taking advantage, over much shorter distances, of the greater carrying capacity of light waves, which are unaffected by electrical resistance.

Two years ago, Jalali achieved a breakthrough when he made a laser out of silicon. Most lasers are made from other materials; because of its physics, silicon does not easily emit light. But generating optical signals would be cheaper and easier if lasers could be made from silicon, whose properties are already well understood by the semiconductor industry. Then, last year, Intel followed up on Jalali's work with a better version of a silicon laser, as well as a modulator to encode signals onto the light beam -- and the field of silicon photonics was born (see "Intel's Breakthrough," July 2005).

But there was a problem. To get the lasing effect, both Jalali and Intel used an external laser and fired it into the silicon, where the energy of the light beam interacted with the material to produce new light. Hitting the silicon with high-intensity laser light causes the silicon to generate unwanted electrons, though, which in turn can absorb the photons being produced, undermining the laser effect. "The material becomes like a sponge, soaking up the light," says Jalali.

Intel addressed the problem by attaching an electrical diode and running a current across the chip to essentially "vacuum up" the electrons. But that required about one watt of electrical power -- enough to run a million transistors on the chip. The current running through the chip also produced waste heat that could cause the chip to stop functioning.

Jalali wondered what would happen if he reversed the voltage bias of the power from the diode, which would reverse the electrical field within the silicon. The result: the reversed bias still swept out the stray electrons, but it did so without consuming that watt of power. 

In much the same way that a solar cell generates electricity when struck by photons in sunlight, the extra electrons in silicon lasers are released when two photons from the laser combine within the silicon. Jalali's device scoops up the free electrons and uses them to run transistors on the chip. Around two-thirds of the optical power that was lost to generating electrons can be recovered and put to use, Jalali says. Instead of using up one watt of power in the electron cleanup and generating extra heat, his method produces several milliwatts of power.

By Neil Savage

Read article at techreview.com

Featured Local Company

Ben Jones CS

2515094276
Spanish Fort, AL
http://www.benjonescs.com

Regional Articles
- Self-Powered Silicon Laser Chips Alabaster AL
- Self-Powered Silicon Laser Chips Albertville AL
- Self-Powered Silicon Laser Chips Alexander City AL
- Self-Powered Silicon Laser Chips Andalusia AL
- Self-Powered Silicon Laser Chips Anniston AL
- Self-Powered Silicon Laser Chips Arab AL
- Self-Powered Silicon Laser Chips Athens AL
- Self-Powered Silicon Laser Chips Atmore AL
- Self-Powered Silicon Laser Chips Auburn AL
- Self-Powered Silicon Laser Chips Bay Minette AL
- Self-Powered Silicon Laser Chips Bessemer AL
- Self-Powered Silicon Laser Chips Birmingham AL
- Self-Powered Silicon Laser Chips Boaz AL
- Self-Powered Silicon Laser Chips Brewton AL
- Self-Powered Silicon Laser Chips Clanton AL
- Self-Powered Silicon Laser Chips Cullman AL
- Self-Powered Silicon Laser Chips Daphne AL
- Self-Powered Silicon Laser Chips Decatur AL
- Self-Powered Silicon Laser Chips Dothan AL
- Self-Powered Silicon Laser Chips Enterprise AL
- Self-Powered Silicon Laser Chips Eufaula AL
- Self-Powered Silicon Laser Chips Fairhope AL
- Self-Powered Silicon Laser Chips Florence AL
- Self-Powered Silicon Laser Chips Foley AL
- Self-Powered Silicon Laser Chips Fort Payne AL
- Self-Powered Silicon Laser Chips Gadsden AL
- Self-Powered Silicon Laser Chips Guntersville AL
- Self-Powered Silicon Laser Chips Haleyville AL
- Self-Powered Silicon Laser Chips Hartselle AL
- Self-Powered Silicon Laser Chips Huntsville AL
- Self-Powered Silicon Laser Chips Jacksonville AL
- Self-Powered Silicon Laser Chips Jasper AL
- Self-Powered Silicon Laser Chips Madison AL
- Self-Powered Silicon Laser Chips Mobile AL
- Self-Powered Silicon Laser Chips Montevallo AL
- Self-Powered Silicon Laser Chips Montgomery AL
- Self-Powered Silicon Laser Chips Muscle Shoals AL
- Self-Powered Silicon Laser Chips Northport AL
- Self-Powered Silicon Laser Chips Opelika AL
- Self-Powered Silicon Laser Chips Oxford AL
- Self-Powered Silicon Laser Chips Ozark AL
- Self-Powered Silicon Laser Chips Pelham AL
- Self-Powered Silicon Laser Chips Pell City AL
- Self-Powered Silicon Laser Chips Phenix City AL
- Self-Powered Silicon Laser Chips Pinson AL
- Self-Powered Silicon Laser Chips Prattville AL
- Self-Powered Silicon Laser Chips Russellville AL
- Self-Powered Silicon Laser Chips Scottsboro AL
- Self-Powered Silicon Laser Chips Selma AL
- Self-Powered Silicon Laser Chips Semmes AL
- Self-Powered Silicon Laser Chips Sylacauga AL
- Self-Powered Silicon Laser Chips Talladega AL
- Self-Powered Silicon Laser Chips Theodore AL
- Self-Powered Silicon Laser Chips Troy AL
- Self-Powered Silicon Laser Chips Trussville AL
- Self-Powered Silicon Laser Chips Tuscaloosa AL
- Self-Powered Silicon Laser Chips Tuscumbia AL
- Self-Powered Silicon Laser Chips Valley AL
- Self-Powered Silicon Laser Chips Wetumpka AL
Related Local Event
BioResearch Product Faire
Dates: 9/9/2008 - 9/9/2008
Location: Doubletree Hotel Birmingham
Birmingham AL
View Details
Rate Article
     
Articles Insider

Rss   Delicious   Digg   Add To My Yahoo   Add To My Google   Bookmark   Search Plugin

Topics:
Advertising Entertainment Home Electronics Software
Business Services Family Home Services Technology
Career Fashion Internet Telecommunications
Cars Financial Services Legal Trade Shows
Computer Hardware Franchise Miscellaneous Travel
Construction Health Nightlife Weddings
Education Holidays Online Database World History
Educational Content Home Appliances Real Estate Resources