Science Forums
Advanced search
User Name
Password

Science Social Network
home    members    help/rules    who is online    contact   

Go Back   Science Forums > Science News > Technology News
Become a science forums sponsor today
Comment
 
LinkBack Article Tools
Published by Tormod 08-27-2007
Scientist from the Niels Bohr Institute at University of Copenhagen and from Harvard University have worked out a new theory which describe how the necessary transistors for the quantum computers of the future may be created.

Researchers dream of quantum computers. Incredibly fast super computers which can solve such extremely complicated tasks that it will revolutionise the application possibilities. But there are some serious difficulties. One of them is the transistors, which are the systems that process the signals.

Today the signal is an electrical current. For a quantum computer the signal can be an optical one, and it works using a single photon which is the smallest component of light.

"To work, the photons have to meet and 'talk', and the photons very rarely interact together," says Anders Søndberg Sørensen who is a Quantum Physicist at the Niels Bohr Institute at Copenhagen University. He explains that light does not function like in Star Wars, where the people fight with light sabres and can cross swords with the light. That is pure fiction and can't happen. When two rays of light meet and cross, the two lights go right through each other. That is called linear optics.

What he wants to do with the light is non-linear optics. That means that the photons in the light collide with each other and can affect each other. This is very difficult to do in practice. Photons are so small that one could never hit one with the other. Unless one can control them – and it is this Anders Sørensen has developed a theory about.

Light collisions at the quantum level
Instead of shooting two photons at each other from different directions and trying to get them to hit each other, he wants to use an atom as an intermediary. The atom can only absorb one photon (such are the laws of physics). If you now direct two photons towards the atom it happens that they will collide on the atom. It is exactly what he wants.

The atom is however very small and difficult to hit. So the photons have to be focussed very precisely. In a previous experiment researchers had discovered that microwaves could be focussed on an atom via a superconducting nano-wire. They got the idea that the same could happen with visible light.

The theoretical model shows that it works. The atom is brought close to the nanowire. Two photons are sent towards the atom and when they hit it an interaction occurs between them, where one imparts information to the other. The information is sent in bits which are either a one or zero digit, and the order of digits produces the message. (Today we can send information via an optic cable and each bit is made up of millions of photons.)

In quantum optics each bit is just one photon. The photon has now received its message and the signal continues on its way. It is a step on the way to building a photon-transistor for a quantum computer.

The research has just been published in the scientific journal Nature Physics.

Source: University of Copenhagen
  #1  
By LaurieAG on 08-30-2007
Re: Photon-transistors for the supercomputers of the future

Hello Tormod,

I've wondered in the past about the possibility of photon collisions being used as an active part of quantum key cryptography. Having to focus the photons onto the atom makes this type of practical application extremely difficult though.

With the advances of OF over the past 20 years or so I would expect that, in the future, an OF cable could be developed with a 'sweet spot' that would allow for intentional photon on photon collisions, with hopefully, the intended results being returned back through the non 'sweet spot' part of the fibre.

After all (at least in crypto keys), couldn't you regard an anti-photon as a normal photon that just arrives through a departure gate? (or leaves through an arrival gate for that matter)
Reply With Quote
Comment

Bookmarks


Currently Active Users Viewing This Article: 1 (0 members and 1 guests)
 
Article Tools

Posting Rules
You may not post new threads
You may not post replies
You may not post attachments
You may not edit your posts

BB code is On
Smilies are On
[IMG] code is On
HTML code is Off
Trackbacks are On
Pingbacks are On
Refbacks are On

Similar Threads
Article Article Starter Category Comments Last Post
Terahertz transistors for far infrared astronomy. BlameTheEx Astronomy and Cosmology 1 02-25-2007 12:00 PM
New Microchips Shun Transistors Jay-qu News in Brief 0 02-15-2006 03:39 PM
How much is known of the photon Belt? arkain101 Strange Claims Forum 0 01-14-2006 06:11 PM
Photon overtakes photon Ver Physics and Mathematics 17 12-09-2005 10:08 AM
World's Fastest SuperComputers Jay-qu News in Brief 0 10-29-2005 05:56 PM


All times are GMT -8. The time now is 08:04 PM.

Hypography?

Hypography [n.]: A combination of "hyperlink" and "bibliography" - ie, a list of links to electronic documents. Comparable to discography and bibliography, but not cartography.

We have been online since May 2000, and aim to be the best place to find and share science-related content of all kinds.

Share the love!

Please add more science to your life. Use our RSS feeds on your blog, your portal, or your favorite feedreader!

Powered by vBulletin® Version 3.7.2
Copyright ©2000 - 2009, Jelsoft Enterprises Ltd.
SEO by vBSEO 3.2.0 ©2008, Crawlability, Inc. Copyright © 2000-2008 Hypography
Part of the Hypography - Science for Everyone Network
Powered by GARS © 2005-2008