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Cosmological imprints of Dirac neutrinos in a keV-vacuum 2HDM

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【作者】 李少平李新强严鑫帅杨亚东

【Author】 Shao-Ping Li;Xin-Qiang Li;Xin-Shuai Yan;Ya-Dong Yang;Institute of Particle Physics and Key Laboratory of Quark and Lepton Physics(MOE), Central China Normal University;Center for High Energy Physics, Peking University;Institute of Particle and Nuclear Physics, Henan Normal University;

【通讯作者】 李新强;

【机构】 Institute of Particle Physics and Key Laboratory of Quark and Lepton Physics(MOE), Central China Normal UniversityCenter for High Energy Physics, Peking UniversityInstitute of Particle and Nuclear Physics, Henan Normal University

【摘要】 The Dirac neutrino masses could be simply generated by a neutrinophilic scalar doublet with a vacuum being dramatically different from the electroweak one.While the case with an eV-scale vacuum has been widely explored previously,we exploit in this work the desert where the scalar vacuum is of O(keV) scale.In this regime,there would be rare hope to probe the keV-vacuum neutrinophilic scalar model via the lepton-flavor-violating processes,which makes it distinguishable from the widely considered eV-scale vacuum.Although such a keV-vacuum scenario is inert in the low-energy flavor physics,we show that the baryogenesis realized via the lightest Dirac neutrino can be a natural candidate in explaining the baryon asymmetry of the Universe.Furthermore,the Dirac neutrinos with a keV-vacuum scalar can generate a shift of the effective neutrino number within the range 0.097 ≤ΔNeff ≤0.112,which can be probed by the future Simons Observatory experiments.In particular,the model with a minimal value ΔNeff=0.097 can already be falsified by the future CMB Stage-Ⅳ and Large Scale Structure surveys,providing consequently striking exploratory avenues in the cosmological regime for such a keV-vacuum scenario.

【Abstract】 The Dirac neutrino masses could be simply generated by a neutrinophilic scalar doublet with a vacuum being dramatically different from the electroweak one.While the case with an eV-scale vacuum has been widely explored previously,we exploit in this work the desert where the scalar vacuum is of O(keV) scale.In this regime,there would be rare hope to probe the keV-vacuum neutrinophilic scalar model via the lepton-flavor-violating processes,which makes it distinguishable from the widely considered eV-scale vacuum.Although such a keV-vacuum scenario is inert in the low-energy flavor physics,we show that the baryogenesis realized via the lightest Dirac neutrino can be a natural candidate in explaining the baryon asymmetry of the Universe.Furthermore,the Dirac neutrinos with a keV-vacuum scalar can generate a shift of the effective neutrino number within the range 0.097 ≤ΔNeff ≤0.112,which can be probed by the future Simons Observatory experiments.In particular,the model with a minimal value ΔNeff=0.097 can already be falsified by the future CMB Stage-Ⅳ and Large Scale Structure surveys,providing consequently striking exploratory avenues in the cosmological regime for such a keV-vacuum scenario.

【基金】 Supported by the National Natural Science Foundation of China (12135006, 12075097, 12047527, 11775092);by the Fundamental Research Funds for the Central Universities (CCNU20TS007, CCNU19TD012, CCNU22LJ004)
  • 【文献出处】 Chinese Physics C ,中国物理C , 编辑部邮箱 ,2023年04期
  • 【分类号】O572.321
  • 【下载频次】5
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