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Higher dimensional effective operators for direct dark matter detection

机译:用于直接暗物质检测的高尺寸有效运算符

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A bstract We discuss higher dimensional effective operators describing interactions between fermionic dark matter and Standard Model particles. They are typically suppressed compared to the leading order effective operators, which can explain why no conclusive direct dark matter detection has been made so far. The ultraviolet completions of the effective operators, which we systematically study, require new particles. These particles can potentially have masses at the TeV scale and can therefore be phenomenologically interesting for LHC physics. We demonstrate that the lowest order options require Higgsportal interactions generated by dimension six operators. We list all possible tree-level completions with extra fermions and scalars, and we discuss the LHC phenomenology of a specific example with extra heavy fermion doublets.
机译:BStract我们讨论了描述了定位Fermionic暗物质和标准模型颗粒之间相互作用的更高尺寸有效运算符。与领先订单有效运营商相比,它们通常被抑制,这可以解释为什么到目前为止没有结论直接的暗物质检测。我们系统地研究的有效运营商的紫外线完井需要新的颗粒。这些颗粒可以在TEV的尺度上具有肿块,因此对于LHC物理而言,可以对这种情况感到有趣。我们证明最低订单选项需要维度六个运算符生成的HIGGSportal交互。我们列出了所有可能的树级完成,具有额外的费米物和标量,我们讨论了具有超重率双重的具体示例的LHC现象学。

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