Chris Monroe and David Wineland have an article in Scientific American about ion trap quantum computing.
The Quantum Pontiff
Theoretical Musings
Search

Profile
Dave Bacon is a theoretical ski bum who is also a pseudo professor. His research is on quantum computing, his scientific passions extend to everything in physics, mathematics, computer science and beyond, and his personal pleasures include making wine, playing poker, skiing, camping, and daydreaming (although not all of those at the same time.)
Nothing he says on this blog should be construed as having anything to do with his employer or his dog.
Recent Comments
- Neil B on So Long and Thanks For All the Fish!
- Si-Hui Tan on Ecto and LaTeXiT
- evden eve nakliyat on Google Hella Cool
- Peter Lund on Google Hella Cool
- wolfgang on So Long and Thanks For All the Fish!
- Rod on So Long and Thanks For All the Fish!
- Art on So Long and Thanks For All the Fish!
- John Sidles on Dead Spins And The Dirty Ground
- Jonathan Vos Post on Dead Spins And The Dirty Ground
- John Sidles on Dead Spins And The Dirty Ground
Recent Posts
- So Long and Thanks For All the Fish!
- Dead Spins And The Dirty Ground
- Bacon Camp
- Best Paper at STOC
- Pr(Future Dave Bacons|Library Cuts) is Small
- De Took Er DataBs Jrbs!
- Google Hella Cool
- Portrait of a Reviewer as a Young Man
- Theory Matters Vision Nuggets
- What To Do With Scirate?
Other Information
Cows are well approximated by a sphere.

« Happy Birthday Integrated Circuit! | Main | Blog Posts With Scientific Content »
SciAm Ion Trap Quantum Computing
Category: Quantum Computing
Posted on: September 13, 2008 10:26 AM, by Dave Bacon
TrackBacks
TrackBack URL for this entry: http://scienceblogs.com/mt/pings/81000
Click here to search for this post on the new blog.


Comments
That's 'quantum,' Dave, not 'quatum.' :)
Posted by: Ian Durham | September 13, 2008 5:24 PM
There should be a function where readers of a blog can suggest spelling or grammar fixes. Then I could just click "accept fix" and it would be fixed.
Posted by: Dave Bacon | September 13, 2008 5:54 PM
There should be a function where readers of an arXiv paper can suggest spelling or grammar or equation fixes. Then I could just click "accept fix" and it would be fixed.
I'd rather that the amendment of the U.S. Constitution continue to be very very difficult, however. That's another way that Scientific Truth is different from politico-legal Truth.
Posted by: Jonathan Vos Post | September 13, 2008 7:39 PM
Is there even such a thing as politico-legal truth?
Posted by: Ian Durham | September 14, 2008 9:53 AM
Do we have to wait for the Science paper to have any idea what Seth Lloyd really suggested? These science reporters carefully deleted any cue.
Quantum Insights Could Lead To Better Detectors
enlarge
ScienceDaily (Sep. 15, 2008) -- A bizarre but well-established aspect of quantum physics could open up a new era of electronic detectors and imaging systems that would be far more efficient than any now in existence, according to new insights by an MIT leader in the field.
{goofy image: Entangled photons. (Credit: Photo courtesy of Paul Kwiat and Michael Reck, University of Vienna)}
MIT Professor of Mechanical Engineering Seth Lloyd has found that a peculiar quantum-physics property called entanglement can be harnessed to make detectors--similar in principle to radar systems used to track airplanes in flight or ships at sea--that are as much as a million times more efficient than existing systems. In addition, beams of entangled light could be swept across a scene to reconstruct a detailed image, with a similar improvement in efficiency.
The new findings, being reported this week in the journal Science, are purely theoretical, but Lloyd says that laboratory experiments have already proven the feasibility of both the light sources and the detectors needed for such a quantum-based photodetection system, so he anticipates that within a year it should be possible to build a laboratory-scale system to demonstrate the new concept.
"It should be possible to have at least a proof-of-principle demonstration within six months to a year," Lloyd said.
For example, military applications could include improved night-vision systems, which send out beams of infrared light--invisible to the naked eye--to sweep across a scene, and then use an infrared detector to reconstruct an image from the light that is reflected back. A more efficient system, using the quantum-entanglement effect, would make it much more difficult for an adversary to detect the fact that such a system was being used, because there would be so much less infrared light needed to provide the illumination.
Theoretically, such a system could be used to allow medical diagnostic systems such as CT scans to work with a vastly reduced X-ray output, thereby making them much safer for the patient, but such applications would be much further in the future. It could also someday be used for safer microscope imaging of living organisms.
Entanglement is a strange property that was deduced theoretically on the basis of the laws of quantum physics, and has been demonstrated over the last several years in a variety of laboratory experiments. Under certain circumstances, when an atom gives off two photons of light at the same time, the two are "entangled" even as they go off in different directions, so that anything that changes one of the photons simultaneously changes the other as well.
This odd property makes it possible to perform seemingly impossible feats such as "quantum teleportation," in which all of the properties of one subatomic particle are recreated in a different particle some distance away. It has also been demonstrated as a way of producing seemingly foolproof encryption systems for data transmission. But explanations of exactly what underlies the entanglement phenomenon remain controversial.
Lloyd says that he cannot provide a simple, intuitive explanation for why the quantum illumination system described in this report actually works, but is certain that the theoretical calculations demonstrating it are correct. "It is as if the two entangled photons retain a memory of each other long after any such memory should have faded away," he said.
Adapted from materials provided by Massachusetts Institute Of Technology. Original article written by David Chandler.
Need to cite this story in your essay, paper, or report? Use one of the following formats:
APA
MLA
Massachusetts Institute Of Technology (2008, September 15). Quantum Insights Could Lead To Better Detectors. ScienceDaily. Retrieved September 15, 2008, from http://www.sciencedaily.comreleases/2008/09/080912124754.htm
Posted by: Jonathan Vos Post | September 15, 2008 9:17 AM