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Model-independent constraints on the CKM matrix elements | V tb |, | V ts | and | V td |

机译:CKM矩阵元素的模型无关约束| <重点类型=“斜体”> V TB |,| <重点类型=“斜体”> v <重点类型=“italic”> ts | 和| <重点类型=“斜体”> V TD |

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A bstract Single top quark production cross sections at hadron colliders are traditionally used to extract the modulus of the V ~( tb )element of the Cabibbo-Kobayashi-Maskawa matrix under the following assumption: | V ~( tb )| ? | V ~( td )|, | V ~( ts )|. For the first time, direct limits on | V ~( td )| and | V ~( ts )| are obtained using experimental data without the assumption of the unitarity of the CKM matrix. Limits on the | V ~( td )|, | V ~( ts )| and | V ~( tb )| are extracted from differential measurements of single top quark cross sections in t -channel as a function of the rapidity and transverse momentum of the top quark and the light jet recoiling against the top quark. We have shown that the pseudorapidity of the forward jet in the single top production is one of the most powerful observables for discriminating between the | V ~( td )| and | V ~( tb )| events. We perform a global fit of top quark related CKM elements to experimental data from the LHC Runs I and II and Tevatron. Experimental data include inclusive and differential single top cross sections in t -channel, inclusive tW production cross section, and top quark branching ratio to b quark and W boson. We present bounds on | V ~( tb )|, | V ~( ts )| and | V ~( td )| using current data and project the results for future LHC data sets corresponding to luminosities of 300 and 3000 fb_(?1).
机译:强子煤机的Bstract单顶夸克生产横截面传统上用于在以下假设下提取Cabibbo-Kobayashi-Maskawa基质的V〜(TB)元件的模量:| V〜(TB)|还是| V〜(TD)|,| V〜(TS)|。首次直接限制| V〜(TD)|和| V〜(TS)|使用实验数据获得而不假设CKM矩阵的统一性。限制| V〜(TD)|,| V〜(TS)|和| V〜(TB)|从T -Channel中的单顶夸克横截面的差分测量中提取,作为顶部夸克的快速和横向动量的函数和对顶夸克的光喷射。我们已经表明,在单一顶级生产中的前射喷射的伪型是用于区分|的最强大的可观察性之一V〜(TD)|和| V〜(TB)|事件。我们对来自LHC I和II和Tevatron的实验数据执行全球性的顶级夸克相关的CKM元素。实验数据包括T -Channel,包容性TW产量横截面和顶部夸克分支比的包容性和差分单顶横截面到B夸克和W玻色子。我们呈现界限| V〜(TB)|,| V〜(TS)|和| V〜(TD)|使用当前数据并将结果对应于300和3000 FB _(α1)的光亮,对应的未来LHC数据集。

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