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Exploring the singlet scalar dark matter from direct detections and neutrino signals via its annihilation in the Sun

机译:通过直接探测和中微子信号通过via灭在太阳中探索单重态标量暗物质

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摘要

We explore the singlet scalar dark matter (DM) from direct detections and high energy neutrino signals generated by the solar DM annihilation. Two singlet scalar DM models are discussed, one is the real singlet scalar DM model as the simple extension of the standard model (SSDM-SM) with a discrete Z_2 symmetry, and another is the complex singlet scalar DM model as the simple extension of the left-right symmetric two Higgs bidoublet model (SSDM-2HBDM) with P and CP symmetries. To derive the Sun capture rate, we consider the uncertainties in the hadronic matrix elements and calculate the spin-independent DM-nucleon elastic scattering cross section. We find that the predicted neutrino induced upgoing muon fluxes in the region 3.7GeV≤m_D≤4.2GeV slightly exceed the Super-Kamiokande limit in the SSDM-SM. However, this exceeded region can be excluded by the current DM direct detection experiments. For the SSDM-2HBDM, one may adjust the Yukawa couplings to avoid the direct detection limits and enhance the predicted muon fluxes. For the allowed parameter space of the SSDM-SM and SSDM-2HBDM, the produced muon fluxes in the Super-Kamiokande and muon event rates in the IceCube are less than the experiment upper bound and atmosphere background, respectively.
机译:我们通过直接检测和太阳DM hil灭产生的高能中微子信号来探索单重态标量暗物质(DM)。讨论了两种单重态标量DM模型,一种是真正的单重态标量DM模型,是具有离散Z_2对称性的标准模型(SSDM-SM)的简单扩展,另一种是复杂的单重态标量DM模型,是标准单模量DM模型。具有左右对称性的左右对称两个希格斯双对偶模型(SSDM-2HBDM)。为了得出太阳捕获率,我们考虑了强子矩阵元素的不确定性,并计算了自旋无关的DM-核子弹性散射截面。我们发现,在3.7GeV≤m_D≤4.2GeV范围内,预测到的中微子诱导上行介子通量略超过SSDM-SM中的Super-Kamiokande极限。但是,当前的DM直接检测实验可以排除该超出的区域。对于SSDM-2HBDM,可以调整Yukawa联轴器以避免直接检测极限并提高预测的μ子通量。对于SSDM-SM和SSDM-2HBDM的允许参数空间,Super-Kamiokande中产生的μ子通量和IceCube中产生的μ子事件率分别小于实验上限和大气背景。

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