tevatron

  • 网络正负质子对撞机;万亿电子伏加速器;兆电子伏特加速器;万亿电子伏特加速器;万亿伏特粒子加速器
tevatrontevatron
  1. Right now we have been excluding regions of mass where the Higgs might be already at the Tevatron .

    此刻我们已经在解除希格斯粒子起先可能在垓电子伏特加速器中的质量规模。

  2. The strong coupling constant at high energy is also calculated and quite consistent with the experimental value made at at Tevatron p-p Collider .

    同时计算了高能情况下的强耦合常数,与最近Tevatron对撞机上的实验结果相比较,吻合较好。

  3. Fermi Lab was home to the LHC 's predecessor , the Tevatron Accelerator which went off line late last year .

    费米实验室是大型强子对撞机前辈Tevatron加速器的家,Tevatron加速器在去年底停止了工作。

  4. It already whips up the world 's most intense beams of neutrinos , using kit that has nothing to do with the Tevatron .

    它掀起了全世界对中微子的热情,对粒子加速器来说使用工具是没用的。

  5. With just four months of data gathered , the monster collider has already edged past the Tevatron , its particle-smashing rival .

    这台巨人般的对撞机,借助于仅用四个月汇集的数据,就已经裸体越过它的粒子破损竞争对手&垓电子伏特加速器。

  6. In the present , efforts are made by TEVATRON , NLC and GLC to find the physical information of the predictions of SM and others .

    目前TEVATRON,NLC,GLC等对撞机都在做这方面的努力,希望能够找到标准模型预言的物理信息及其他信息。

  7. LHC collides proton and proton beams while Tevatron is a proton-antiproton collider .

    大型强子对撞机加速质子和质子束并进行质子质子对撞,而TTevatron是质子反质子对撞机。

  8. Roser says the final data produced by the Tevatron is consistent with CERN 's findings . He says it all leads up to dramatic change for scientists :

    Roser说,Tevatron得出的数据与CERN的发现是一致的,他说这会给科学家们带来巨大的变化:

  9. CDF collaboration has observed the evidence of top quark in 1 . 8 TeV pp collisions , on the Tevatron at Fermi National Lab.

    美国费米国家实验室的CDF实验组在对撞能量1.8GeV的TEVATRON质子-反质子对撞机上观察到了顶夸克的证据。

  10. The passing of the Tevatron may cause the shedding of a manly ( and womanly ) tear or two amongAmerica 's physicists .

    粒子加速器的离去,可能会使得很多美国物理学家失去男子气和女子气或者两者都失去。

  11. The non decoupling contribution can be enhanced by large tan β and therefore large corrections to the hadronic production rates at the Tevatron and LHC are expected in the large tan β limit .

    大的tanβ值可以提高非退耦的贡献,因此大tanβ情况下,较大的修正结果可能在Tevatron和LHC上观测到。