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Testing Yukawa-unified SUSY during year 1 of LHC: the role of multiple b-jets, dileptons and missing E T

机译:在LHC的1年级中测试yukawa-统一的苏比:多重<重点类型=“斜体”> B -Jets,Direptons和缺失<重点类型=“斜体”> E <下标> <重点类型=“斜体”> T

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We examine the prospects for testing SO(10) Yukawa-unified supersymmetric models during the first year of LHC running at $ sqrt s = 7,{ext{TeV}} $ , assuming integrated luminosity values of ~0.1-1 fb_(?1). We consider two cases: the Higgs splitting (HS) and the D -term splitting (DR3) models. Each generically predicts light gluinos and heavy squarks, with an inverted scalar mass hierarchy. We hence expect large rates for gluino pair production followed by decays to final states with large b -jet multiplicity. For 0.2 fb_(?1)of integrated luminosity, we find a 5 σ discovery reach of $ {m_{ilde g}} sim 400,{ext{GeV}} $ even if missing transverse energy, E ~( T )_(miss), is not a viable cut variable, by examining the multi- b -jet final state. A corroborating signal should stand out in the opposite-sign (OS) dimuon channel in the case of the HS model; the DR3 model will require higher integrated luminosity to yield a signal in the OS dimuon channel. This region may also be probed by the Tevatron with 5–10 fb_(?1)of data, if a corresponding search in the multi- b + E ~( T )_(miss)channel is performed. With higher integrated luminosities of ~1 fb_(?1), using E ~( T )_(miss)plus a large multiplicity of b -jets, LHC should be able to discover Yukawa-unified SUSY with $ {m_{ilde g}} lesssim 630,{ext{GeV}} $ . Thus, the year 1 LHC reach for Yukawa-unified SUSY should be enough to either claim a discovery of the gluino, or to very nearly rule out this class of models, since higher values of $ {m_{ilde g}} $ lead to rather poor Yukawa unification.
机译:我们检查了在$ sqrt s = 7 ,{ text {tev}} $,假设〜0.1-1 fb_的集成发光值的第一年在LHC运行的第一年(10)yukawa统一的超对对称模型的前景。 (?1)。我们考虑两种情况:HIGGS分离(HS)和D -TERM分离(DR3)模型。每个仿制性地预测光龟头和重突出,具有倒标标量级层次结构。因此,我们预计Gluino对生产的大率,然后衰减到具有大B-jet多重的最终状态。对于整合发光度的0.2 FB _(?1),我们发现$ {m _ { tilde g}} sim 400 ,{ text {gev}} $即使丢失的横向能量,e〜( t)_(未命中),不是一种可行的切割变量,通过检查多B-jet最终状态。在HS模型的情况下,证实信号应在相反的符号(OS)Dimuon通道中脱颖而出; DR3模型需要更高的集成光度,以产生OS Dimuon通道中的信号。如果执行了多B + E〜(t)_(未命中)信道中的相应搜索,则该区域也可以通过数据的TEVATRON探测数据,其中数据中的5-10fb _(Δ1)。具有较高的集成光亮〜1 fb _(?1),使用e〜(t)_(miss)加上大量的b -jets,LHC应该能够以$ {m _ { tilde g探索yukawa统一的susy }} lesssim 630 ,{ text {gev}} $。因此,为yukawa-unified susy达到了1年的LHC覆盖应该是索赔的一种发现,或者非常几乎排除了这类模型,因为{m _ { tilde g}} reng亚芳统一的相当贫穷。

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