论文标题

通过缺失动量实验来表征暗物质信号

Characterizing Dark Matter Signals with Missing Momentum Experiments

论文作者

Blinov, Nikita, Krnjaic, Gordan, Tuckler, Douglas

论文摘要

固定的目标缺失摩托车实验(例如LDMX和M $^3 $)是轻度暗物质和其他光线,弱耦合颗粒(SM)的强大探针。这样的实验涉及$ \ sim $ 10 GEV梁颗粒,其能量和动量在通过适当薄的目标之前和之后单独测量。如果在目标中辐射产生新状态,则后流束颗粒将失去其初始动量的很大一部分,并且在下游否决检测器中未观察到SM颗粒。我们探讨了这样的实验如何使用运动学变量和实验参数,例如梁的能量和极化,以测量辐射颗粒的性质并在发现信号(如果发现信号)的情况下进行区分。特别是,向后退颗粒的横向动量显示为测量新辐射状态的质量的强大工具,与单独的后坐力相比,具有明显更好的区分能力。我们进一步说明如何使用梁能量,极化和Lepton风味(即电子或MUON)的变化来消除新相互作用的Lorentz结构的可能性。

Fixed target missing-momentum experiments such as LDMX and M$^3$ are powerful probes of light dark matter and other light, weakly coupled particles beyond the Standard Model (SM). Such experiments involve $\sim$ 10 GeV beam particles whose energy and momentum are individually measured before and after passing through a suitably thin target. If new states are radiatively produced in the target, the recoiling beam particle loses a large fraction of its initial momentum, and no SM particles are observed in a downstream veto detector. We explore how such experiments can use kinematic variables and experimental parameters, such as beam energy and polarization, to measure properties of the radiated particles and discriminate between models if a signal is discovered. In particular, the transverse momentum of recoiling particles is shown to be a powerful tool to measure the masses of new radiated states, offering significantly better discriminating ability compared to the recoil energy alone. We further illustrate how variations in beam energy, polarization, and lepton flavor (i.e., electron or muon) can be used to disentangle the possible the Lorentz structure of the new interactions.

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