论文标题
$μ$ tristan
$μ$TRISTAN
论文作者
论文摘要
J-PARC上为MUON $ G-2 $实验开发的超冷的MUON技术提供了低发射$μ^+$ beam,可以加速并用于现实的对撞机实验。我们通过加速$μ^+$ beam最高为1 TEV来考虑新的对撞机实验的可能性。允许$μ^+$ beam与高强度$ e^ - $ beam碰撞,$ e^ - $ beam $ e_ {e^ - } = 30 $ gev,在储物戒指上,与tristan(3 km的周长)相同的存储环,可以实现与中心能量$ \ sqrt sqrt sqrt profords = 346 = 346 = 346的相机实验玻色融合过程。我们估计使用现有加速器技术的可交付性发光度的水平为$ 5 \ times 10^{33} $ cm $ $^{ - 2} $ s $^{ - 1} $,对撞机可以是一个很好的Higgs Boson Factory。通过使用相同的存储环,也可以使用$μ^+μ^+ $ colliders最高$ \ sqrt s = 2 $ tev。他们有能力生产Muon的超级球员到Tev群众。
The ultra-cold muon technology developed for the muon $g-2$ experiment at J-PARC provides a low emittance $μ^+$ beam which can be accelerated and used for realistic collider experiments. We consider the possibility of new collider experiments by accelerating the $μ^+$ beam up to 1 TeV. Allowing the $μ^+$ beam to collide with a high intensity $e^-$ beam at the TRISTAN energy, $E_{e^-}= 30$ GeV, in the storage ring with the same size as TRISTAN (the circumference of 3 km), one can realize a collider experiment with the center-of-mass energy $\sqrt s = 346$ GeV, which allows productions of the Higgs bosons through the vector boson fusion processes. We estimate the deliverable luminosity with existing accelerator technologies to be at the level of $5 \times 10^{33}$ cm$^{-2}$ s$^{-1}$, with which the collider can be a good Higgs boson factory. The $μ^+ μ^+$ colliders up to $\sqrt s = 2$ TeV are also possible by using the same storage ring. They have a capability of producing the superpartner of the muon up to TeV masses.