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NIST demonstrates better memory with quantum computer bits
August 11, 2005
Physicists at the National Institute of Standards and Technology (NIST) have used charged atoms (ions) to demonstrate a quantum physics version of computer memory lasting longer than 10 seconds-more than 100,000 times longer than in previous experiments on the same ions. The advance improves prospects for making practical, reliable quantum computers (which make use of the properties of quantum systems rather than transistors for performing calculations or storing information). Quantum computers, if they can be built, could break today's best encryption systems, accelerate database searching, develop novel products such as fraud-proof digital signatures or simulate complex biological systems to help design new drugs. As described in the Aug. 5, 2005, issue of Physical Review Letters, NIST scientists stored information in single beryllium ions for longer periods of time by using a different pair of the ions' internal energy levels to represent 1 and 0 than was used in the group's previous quantum computing experiments. This new set of quantum states is unaffected by slight variations in magnetic fields, which previously caused memory losses in ions stored in electromagnetic traps.
Quantum memory must be able to store "superpositions," an unusual property of quantum physics in which a quantum bit (qubit) such as an ion represents both 0 and 1 at the same time. The new approach enables qubits to maintain superpositions over 1 million times longer than might be needed to carry out the information processing steps in a future quantum computer. The advance is, therefore, an important step toward the goal of designing a "fault tolerant" quantum computer because it significantly reduces the computing resources needed to correct memory errors.
In related experiments also described in the paper, NIST scientists demonstrated that pairs of "entangled" ions can retain their quantum states for up to about 7 seconds. Entanglement is another unusual property of quantum physics that correlates the behavior of physically separated ions. Superposition and entanglement are the two key properties expected to give quantum computers great power.
National Institute of Standards and Technology (NI
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An Introduction to Quantum Computing
by Phillip Kaye (Author), Raymond Laflamme (Author), Michele Mosca (Author)
This concise, accessible text provides a thorough introduction to quantum computing - an exciting emergent field at the interface of the computer, engineering, mathematical and physical sciences. Aimed at advanced undergraduate and beginning graduate students in these disciplines, the text is technically detailed and is clearly illustrated throughout with diagrams and exercises. Some prior knowledge of linear algebra is assumed, including vector spaces and inner products. However, prior familiarity with topics such as tensor products and spectral decomposition is not required, as the necessary material is reviewed in the text.
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A Shortcut Through Time: The Path to the Quantum Computer
by George Johnson (Author)
In this remarkably illustrative and thoroughly accessible look at one of the most intriguing frontiers in science and computers, award-winning New York Times writer George Johnson reveals the fascinating world of quantum computing—the holy grail of super computers where the computing power of single atoms is harnassed to create machines capable of almost unimaginable calculations in the blink of an eye.
As computer chips continue to shrink in size, scientists anticipate the end of the road: A computer in which each switch is comprised of a single atom. Such a device would operate under a different set of physical laws: The laws of quantum mechanics. Johnson gently leads the curious outsider through the surprisingly simple ideas needed to understand this dream, discussing the...
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James Bond 007: Quantum of Solace
by Activision
Can you be the next James Bond? Coldly efficient dangerous the new Bond is the ultimate weapon in today's ruthless world of international espionage. Blending first person shooting and third person action, Quantum of Solace puts you in control of Bond's greatest weapon his mind. You must think like Bond and intelligently use the map and situation to your advantage. Confront enemies in a variety of ways: take them head on, fire from behind cover or sneak up silently and eliminate them with a variety of special takedown moves. Based on Quantum of Solace and Casino Royale, Quantum of Solace the Game puts you in the dangerous world of international espionage and intrigue.
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Quantum Leap - The Complete Fourth Season
Starring: Scott Bakula, Dean Stockwell, Candi Brough, Randi Brough, Christine Cattell Directed By: Anita W. Addison, Bob Hulme, Chris Ruppenthal, Eric Laneuville, James Whitmore Jr.
Take a trip through time with the daring Dr. Sam Beckett (Scott Bakula) and his hilarious hologram guide, Al (Dean Stockwell), in all 22 extraordinary, groundbreaking episodes of Quantum Leap: The Complete Fourth Season. It’s adventure like you’ve never seen, with each amazing episode from this eight-time Emmy-nominated season now digitally remastered for incredible picture quality. Journey back as Sam and Al survive a hurricane, trail a murderer, make a monkey out of themselves and even switch roles! With each "leap" into another identity, Sam hopes to find some insight into the jump that will finally take him home. And now, fans can spend more time with Sam and Al with an exclusive bonus episode from the Fifth Season. You won’t want to miss a minute of the adventure!
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LeapFrog Quantum Pad Learning System
by LeapFrog
This educational product helps children in 3rd to 5th grade learn fundamental skills and explore topics that interest them the most. Each book (sold separately) is packed with engaging activities, games, stories and facts that fascinate kids. The Quantum Pad Learning System features engaging audio, games, activities and quizzes that make learning fun. It comes with an interactive sampler book of the Quantum Pad library. Other Quantum Pad Interactive Books and Cartridges sold separately. As an added bonus, this system also works with all LeapPad books and cartridges (sold separately). Requires 4 "AA" alkaline batteries (not included).
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Optical Quantum OQPDPRDL08WIP DVD+R DL Spindle - 50 Pack, White Inkjet HUB Printable
by Optical Quantum
Get almost twice the storage capacity of standard DVDs with these Optical Quantum OQPDPRDL08WIP DVD+R DL discs
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Quantum of Solace
David Arnold (Composer)
Quantum of Solace continues the high octane adventures of Daniel Craig as James Bond. Directed by Marc Fisher, this 22nd installation in the 007 franchise hits theaters on October 31st, 2008 in Europe and November 14th in the US. This film features music by composer David Arnold and the new single 'Another Way To Die' by Jack White (White Stripes) and Alicia Keys, a first ever duet for a James Bond flick. The Quantum of Solace soundtrack will include the movie score and this new single. David Arnold is a Grammy-winning English film composer, best known for scoring five James Bond films including the score for Casino Royale and the blockbuster Independence Day.
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Learning Resources - Quantum Big Screen Microscope
by Learning Resources
This big seven-inch screen microscope projects a whopping 10x, 20x, or 40x clear image. Includes assortment of accessories, glare-reducing shield and Snap-Tight tray to hold components. Operates with three "C" batteries (not included) or AC adapter (sold separately).
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Quantum Superloader 3 Eight-cartridge LTO Magazine Include One Eight-cartridge M
by Quantum Chemical
When you need simplicity, reliability and the most value for your money in a tape autoloader, the Quantum SuperLoader is the right choice. Whether you want to keep up with application data growth, replace older units within your existing infrastructure or implement a new application, it offers technological excellence you can afford - from the worldwide leader in autoloader systems.
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Quantum Computer Science: An Introduction
by N. David Mermin (Author)
In the 1990's it was realized that quantum physics has some spectacular applications in computer science. This book is a concise introduction to quantum computation, developing the basic elements of this new branch of computational theory without assuming any background in physics. It begins with an introduction to the quantum theory from a computer-science perspective. It illustrates the quantum-computational approach with several elementary examples of quantum speed-up, before moving to the major applications: Shor's factoring algorithm, Grover's search algorithm, and quantum error correction. The book is intended primarily for computer scientists who know nothing about quantum theory, but will also be of interest to physicists who want to learn the theory of quantum computation, and...
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