{"id":753116,"date":"2013-05-24T15:51:41","date_gmt":"2013-05-24T19:51:41","guid":{"rendered":"http:\/\/gigaom.com\/?p=649300"},"modified":"2013-05-24T15:51:41","modified_gmt":"2013-05-24T19:51:41","slug":"australian-researchers-get-closer-to-scalable-quantum-computing","status":"publish","type":"post","link":"https:\/\/mereja.com\/index\/753116","title":{"rendered":"Australian researchers get closer to scalable quantum computing"},"content":{"rendered":"<p>Researchers in Australia are making progress in their quest to construct a scalable quantum computer, having developed a method for extracting information from an electron racing around a phosphorus atom in silicon, the <em>MIT Technology Review<\/em> <a href=\"http:\/\/www.technologyreview.com\/view\/515286\/the-phosphorous-atom-quantum-computing-machine\/\">reported<\/a> Wednesday. The achievement suggests that commercial use &#8212; and, therefore, wider implementation of a probabilistic computing model much faster than current systems &#8212; could be just a wee bit closer.<\/p> <p>The idea of a operating a quantum computer with a quantum bit &#8212; or qubit &#8212; based on a phosphorous atom harks back to <a href=\"http:\/\/www.nature.com\/nature\/journal\/v393\/n6681\/abs\/393133a0.html\">a vision articulated by Australian Bruce Kane<\/a> in research published in <em>Nature<\/em> in 1998. &#8220;The realization of such a computer is dependent on future refinements of conventional silicon electronics,&#8221; Kane explained in the abstract to his paper. Researchers in Australia have been striving to put Kane&#8217;s concept into practice for more than 10 years, the MIT Technology Review article notes, and their latest step is to get information from an agitated electron:<\/p> <blockquote id=\"quote-these-guys-implanted\"><p>These guys implanted a single phosphorous atom in a silicon nanostructure and placed it in a powerful magnetic field at a temperature close to absolute zero. They were then able to flip the state of an electron orbiting the phosphorous atom by zapping it with microwaves. <\/p> <p>The final step, a significant challenge in itself, was to read out the state of the electron using a process known as spin-to-change conversion.<\/p> <p>The end result is a device that can store and manipulate a qubit and has the potential to perform two-qubit logic operations with atoms nearby; in other words the fundamental building block of a scalable quantum computer. <\/p><\/blockquote> <p>Still, the Australians have work to do, according to their paper, which they <a href=\"http:\/\/arxiv.org\/abs\/1305.4481\">submitted<\/a> on Monday:<\/p> <blockquote id=\"quote-future-experiments-w2\"><p>Future experiments will focus on the coupling of two donor electron spin qubits through the exchange interaction, a key requirement in proposals for scalable quantum computing architectures in this system. Taken together with the single-atom doping technologies now demonstrated in silicon, the advances reported here open the way for a spin-based quantum computer utilising single atoms, as first envisaged by Kane more than a decade ago. <\/p><\/blockquote> <p>Meanwhile, researchers in England have done <a href=\"http:\/\/www.zdnet.com\/quantum-computing-gets-10-billion-qubits-closer-3040091518\/\">work of their own<\/a> on quantum entanglement involving phosphorus atoms.<\/p> <p>Quantum computers from Canada have seen some commercial adoption, with <a href=\"http:\/\/gigaom.com\/2013\/03\/22\/lockheed-martin-wants-to-use-a-quantum-computer-to-develop-radar-aircraft-systems\/\">Lockheed Martin<\/a> and <a href=\"http:\/\/gigaom.com\/2013\/05\/16\/google-nasa-quantum-computing-project-could-bring-stronger-machine-learning-to-the-masses\/\">a Google-initiated lab<\/a> signing up for D-Wave Systems quantum computers. 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The achievement suggests that commercial use &#8212; and, therefore, wider implementation of a probabilistic computing model much [&hellip;]<\/p>\n","protected":false},"author":4831,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"advanced_seo_description":"","jetpack_seo_html_title":"","jetpack_seo_noindex":false,"_jetpack_memberships_contains_paid_content":false,"footnotes":""},"categories":[4821],"tags":[],"class_list":["post-753116","post","type-post","status-publish","format-standard","hentry","category-news"],"jetpack_featured_media_url":"","jetpack_shortlink":"https:\/\/wp.me\/p9NivD-39V2","jetpack_sharing_enabled":true,"_links":{"self":[{"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/posts\/753116","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/users\/4831"}],"replies":[{"embeddable":true,"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/comments?post=753116"}],"version-history":[{"count":0,"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/posts\/753116\/revisions"}],"wp:attachment":[{"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/media?parent=753116"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/categories?post=753116"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/mereja.com\/index\/wp-json\/wp\/v2\/tags?post=753116"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}