国产丝袜在线精品丝袜|在线A毛片免费视频观|日韩精品久久久一区二区|亚洲成在人网站天堂直播|99在线精品66视频无码|亚洲欧美不卡视频在线播放|国产精品久久久久久免费一级|久久精品国产亚洲AV香蕉软件

        1. <i id="avp7g"><ins id="avp7g"></ins></i>
          <td id="avp7g"><tr id="avp7g"></tr></td>
        2. <small id="avp7g"><dl id="avp7g"><small id="avp7g"></small></dl></small>
        3. <track id="avp7g"><dl id="avp7g"><delect id="avp7g"></delect></dl></track>

          <source id="avp7g"><ins id="avp7g"></ins></source>
        4. <p id="avp7g"><pre id="avp7g"></pre></p>
          <td id="avp7g"><tr id="avp7g"></tr></td>
        5. Quantum device generates multiple futures simultaneously: study

          Source: Xinhua| 2019-04-09 20:35:21|Editor: xuxin
          Video PlayerClose

          SYDNEY, April 9 (Xinhua) -- Scientists from Australia and Singapore have created a quantum device capable of representing all possible futures in a simultaneous quantum superposition, a study revealed on Tuesday.

          Inspired both by science fiction and the work of physics icon Richard Feynman, Assistant Professor Mile Gu from Singapore's Nanyang Technological University, conceived of the idea that a quantum computer could examine all possible futures by placing them in a superposition.

          "When we think about the future, we are confronted by a vast array of possibilities," Gu explained.

          "These possibilities grow exponentially as we go deeper into the future. For instance, even if we have only two possibilities to choose from each minute, in less than half an hour there are 14 million possible futures. In less than a day, the number exceeds the number of atoms in the universe."

          Joining forces with a team from Australia's Griffith University, led by Professor Geoff Pryde, Gu and colleagues created a device capable of representing potential futures in the form of photons - quantum particles of light.

          While currently limited to only 16 simultaneous futures, the team says that the device can in principle scale without bounds.

          It is also capable of representing bias towards potential outcomes based on their probability of occurrence, helping researchers to understand how much that bias impacts the future as well as to provide a framework for some very innovative applications.

          "Many current artificial intelligence (AI) algorithms learn by seeing how small changes in their behavior can lead to different future outcomes, so our techniques may enable quantum enhanced AIs to learn the effect of their actions much more efficiently," co-author Farzad Ghafari from Griffith University said.

          The true potential of the breakthrough is yet to be seen however, because as the science tells us, the future is a vast range of possibilities.

          "Just as few could imagine the many uses of classical computers in the 1960s, we are still very much in the dark about what quantum computers can do," Pryde said.

          TOP STORIES
          EDITOR’S CHOICE
          MOST VIEWED
          EXPLORE XINHUANET
          010020070750000000000000011100001379631561
          庆安县| 沭阳县| 平山县| 含山县| 吉林省| 丽水市| 马尔康县| 周宁县| 棋牌| 巴彦县| 蒙城县| 宁城县| 砚山县| 清原| 常山县| 新营市| 萨嘎县| 阜平县| 兴国县| 思茅市| 满城县| 社旗县| 遂溪县| 遵义市| 宁南县| 廉江市| 尼勒克县| 手游| 延吉市| 凌云县| 龙岩市| 镇江市| 万宁市| 西昌市| 二连浩特市| 永胜县| 哈密市| 甘孜县| 尚义县| 平南县| 张掖市|