4.4 Article

Naturalness of MSSM dark matter

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 8, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP08(2016)058

关键词

Supersymmetry Phenomenology

资金

  1. MICINN, Spain [FPA2013-44773-P]
  2. Consolider-Ingenio CPAN [CSD2007-00042]
  3. MULTIDARK [CSD2009-00064]
  4. Spanish MINECO Centro de excelencia Severo Ochoa Program [SEV-2012-0249]
  5. National Science Foundation [PHY-1520966]
  6. Campus of Excellence UAM+CSIC
  7. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo
  8. Ramon y Cajal program of the Spanish MICINN
  9. SOM Sabor y origen de la Materia MEC project [FPA2011-29678]
  10. Fenomenologia y Cosmologia de la Fisica mas alla del Modelo Estandar e lmplicaciones Experimentales en la era del LHC MEC project [FPA2010-17747]
  11. Severo Ochoa MINECO project [SEV-2014-0398]
  12. Consolider-Ingenio programme under grant MULTIDARK [CSD2009-00064]
  13. Invisibles European ITN project FP7-PEOPLE-ITN [PITN-GA-2011-289442-INVISIBLES]
  14. Direct For Mathematical & Physical Scien
  15. Division Of Physics [1520966] Funding Source: National Science Foundation

向作者/读者索取更多资源

There exists a vast literature examining the electroweak (EW) fine-tuning problem in supersymmetric scenarios, but little concerned with the dark matter (DM) one, which should be combined with the former. In this paper, we study this problem in an, as much as possible, exhaustive and rigorous way. We have considered the MSSM framework, assuming that the LSP is the lightest neutralino, chi(0)(1), and exploring the various possibilities for the mass and composition of chi(0)(1), as well as different mechanisms for annihilation of the DM particles in the early Universe (well-tempered neutralinos, funnels and co-annihilation scenarios). We also present a discussion about the statistical meaning of the fine-tuning and how it should be computed for the DM abundance, and combined with the EW fine-tuning. The results are very robust and model-independent and favour some scenarios (like the h-funnel when M-chi 10 is not too close to m(h)/2) with respect to others (such as the pure wino case). These features should be taken into account when one explores natural SUSY scenarios and their possible signatures at the LHC and in DM detection experiments.

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