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Higgs boson mass and complex sneutrino dark matter in the supersymmetric inverse seesaw models

机译:Higgs培体质量和复杂的Sneutrino暗物质在超对称逆跷跷板模型中

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A bstract The discovery of a relatively heavy Standard Model (SM)-like Higgs boson challenges naturalness of the minimal supersymmetric standard model (MSSM) from both Higgs and dark matter (DM) sectors. We study these two aspects in the MSSM extended by the low-scale inverse seesaw mechanism. Firstly, it admits a sizable radiative contribution to the Higgs boson mass m ~( h ), up to ~4 GeV in the case of an IR-fixed point of the coupling Y ~( ν ) LH ~( u ) ν _( c )and a large sneutrino mixing. Secondly, the lightest sneutrino, highly complex as expected, is a viable thermal DM candidate. Owing to the correct DM relic density and the XENON100 experimental constraints, two scenarios survive: a Higgs-portal complex DM with mass lying around the Higgs pole or above W threshold, and a coannihilating DM with slim prospect of detection. Given an extra family of sneutrinos, both scenarios naturally work when we attempt to suppress the DM left-handed sneutrino component, confronting with enhancing m ~( h ).
机译:Bstract的发现是一种相对沉重的标准模型(SM) - 麦格斯玻色子的挑战来自HIGGS和暗物质(DM)扇区的最小超对称标准模型(MSSM)的自然度。我们研究了由低尺度逆跷跷板机制延伸的MSSM中的这两个方面。首先,它承认,在耦合y〜(ν)lh〜(u)ν(c)的IR-TREAD点的情况下,在HGGS玻色子质量m〜(h)中,高达〜4 gev的贡献。 )和一个大的Sneutrino混合。其次,最轻的Sneutrino,高度复杂,是一种可行的热DM候选者。由于DM遗物密度正确和Xenon100实验约束,两种情况存活下来:具有围绕HIGGS杆或高于W阈值的质量的HIGGS-PORTAL复合DM,以及具有纤细检测前景的CONNIHILITATION DM。鉴于额外的Sneutrinos家族,这两种情况都在尝试抑制DM左手Sneutrino成分时,面对增强M〜(H)。

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