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Title: Moduli stabilisation and the statistics of axion physics in the landscape

Journal Article · · Journal of High Energy Physics (Online)
 [1]; ORCiD logo [2];  [3];  [4];  [5]
  1. Universitá di Bologna (Italy). Dipartimento di Fisica e Astronomia; National Inst. of Nuclear Physics (INFN), Bologna (Italy); Univ. of Oklahoma, Norman, OK (United States)
  2. Universitá di Bologna (Italy). Dipartimento di Fisica e Astronomia; National Inst. of Nuclear Physics (INFN), Bologna (Italy)
  3. Harish-Chandra Research Inst., HBNI, Allahabad (India)
  4. Harish-Chandra Research Inst., HBNI, Allahabad (India)
  5. Univ. of Oklahoma, Norman, OK (United States). Dept. of Physics and Astronomy

String theory realisations of the QCD axion are often said to belong to the anthropic window where the decay constant is around the GUT scale and the initial misalignment angle has to be tuned close to zero. In this paper we revisit this statement by studying the statistics of axion physics in the string landscape. We take moduli stabilisation properly into account since the stabilisation of the saxions is crucial to determine the physical properties of the corresponding axionic partners. We focus on the model-independent case of closed string axions in type IIB flux compactifications and find that their decay constants and mass spectrum feature a logarithmic, instead of a power-law, distribution. In the regime where the effective field theory is under control, most of these closed string axions are ultra-light axion-like particles, while axions associated to blow-up modes can naturally play the role of the QCD axion. Hence, the number of type IIB flux vacua with a closed string QCD axion with an intermediate scale decay constant and a natural value of the misalignment angle is only logarithmically suppressed. In a recent paper we found that this correlates also with a logarithmic distribution of the supersymmetry breaking scale, providing the intriguing indication that most, if not all, of the phenomenologically interesting quantities in the string landscape might feature a logarithmic distribution.

Research Organization:
Univ. of Oklahoma, Norman, OK (United States)
Sponsoring Organization:
USDOE Office of Science (SC)
Grant/Contract Number:
SC0009956
OSTI ID:
1851222
Journal Information:
Journal of High Energy Physics (Online), Journal Name: Journal of High Energy Physics (Online) Journal Issue: 8 Vol. 2021; ISSN 1029-8479
Publisher:
Springer NatureCopyright Statement
Country of Publication:
United States
Language:
English

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