QQ登录

只需要一步,快速开始

 注册地址  找回密码
查看: 1736|回复: 1
打印 上一主题 下一主题

New Way to Produce Antimatter-Containing Atom

[复制链接]
字体大小: 正常 放大
张立涛 实名认证       

280

主题

5

听众

2452

积分

  • TA的每日心情
    奋斗
    2015-10-7 09:09
  • 签到天数: 75 天

    [LV.6]常住居民II

    优秀斑竹奖

    群组西北工业大学

    群组Matlab讨论组

    群组狂热数模爱好者

    群组岩土力学与地下工程

    跳转到指定楼层
    1#
    发表于 2011-7-12 11:51 |只看该作者 |倒序浏览
    |招呼Ta 关注Ta
    Physicists Discover New Way to Produce Antimatter-Containing Atom


    Physicists at the University of California, Riverside report that they have discovered a new way to create positronium, an exotic and short-lived atom that could help answer what happened to antimatter in the universe, why nature favored matter over antimatter at the universe's creation.

    Positronium is made up of an electron and its antimatter twin, the positron. It has applications in developing more accurate Positron Emission Tomography or PET scans and in fundamental physics research.
    Recently, antimatter made headlines when scientists at CERN, the European Organisation for Nuclear Research, trapped antihydrogen atoms for more than 15 minutes. Until then, the presence of antiatoms was recorded for only fractions of a second.
    In the lab at UC Riverside, the physicists first irradiated samples of silicon with laser light. Next they implanted positrons on the surface of the silicon. They found that the laser light frees up silicon electrons that then bind with the positrons to make positronium.
    "With this method, a substantial amount of positronium can be produced in a wide temperature range and in a very controllable way," said David Cassidy, an assistant project scientist in the Department of Physics and Astronomy, who performed the research along with colleagues. "Other methods of producing positronium from surfaces require heating the samples to very high temperatures. Our method, on the other hand, works at almost any temperature -- including very low temperatures."
    Cassidy explained that when positrons are implanted into materials, they can sometimes get stuck on the surface, where they will quickly find electrons and annihilate.
    "In this work, we show that irradiating the surface with a laser just before the positrons arrive produces electrons that, ironically, help the positrons to leave the surface and avoid annihilation," said Allen Mills, a professor of physics and astronomy, in whose lab Cassidy works. "They do this by forming positronium, which is spontaneously emitted from the surface. The free positronium lives more than 200 times longer than the surface positrons, so it is easy to detect."
    Study results appear in the July 15 issue of Physical Review Letters.
    The researchers chose silicon in their experiments because it has wide application in electronics, is robust, cheap and works efficiently.
    "Indeed, at very low temperatures, silicon may be the best thing there is for producing positronium, at least in short bursts," Cassidy said.
    The researchers' eventual goal is to perform precision measurements on positronium in order to better understand antimatter and its properties, as well as how it might be isolated for longer periods of time.
    Cassidy and Mills were joined in the research by Harry Tom, a professor and the chair of physics and astronomy, and Tomu H. Hisakado, a graduate student in Mills's lab.
    In the near future, this research team hopes to cool the positronium down to lower energy emission levels for other experimental uses, and create also a "Bose-Einstein condensate" for positronium -- a collection of positronium atoms that are in the same quantum state.
    "The creation of a Bose-Einstein condensate of positronium would really push the boundaries of what is possible in terms of real precision measurements," Cassidy said. "Such measurements would shed more light on the properties of antimatter and may help us probe further into why there is asymmetry between matter and antimatter in the universe."
    Grants from the National Science Foundation and the US Air Force Research Laboratory funded the study.
    zan
    转播转播0 分享淘帖0 分享分享0 收藏收藏0 支持支持0 反对反对0 微信微信
    优秀的男人最有魅力!
    alair005        
    头像被屏蔽

    0

    主题

    4

    听众

    782

    积分

    升级  45.5%

  • TA的每日心情

    2012-2-7 08:08
  • 签到天数: 5 天

    [LV.2]偶尔看看I

    提示: 作者被禁止或删除 内容自动屏蔽
    回复

    使用道具 举报

    您需要登录后才可以回帖 登录 | 注册地址

    qq
    收缩
    • 电话咨询

    • 04714969085
    fastpost

    关于我们| 联系我们| 诚征英才| 对外合作| 产品服务| QQ

    手机版|Archiver| |繁體中文 手机客户端  

    蒙公网安备 15010502000194号

    Powered by Discuz! X2.5   © 2001-2013 数学建模网-数学中国 ( 蒙ICP备14002410号-3 蒙BBS备-0002号 )     论坛法律顾问:王兆丰

    GMT+8, 2024-4-28 14:57 , Processed in 0.373548 second(s), 57 queries .

    回顶部