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Hidden Sectors in String Theory: Kinetic Mixings, Fifth Forces and Quintessence

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arxiv 1811.10633 v1 pith:QMQQNXB3 submitted 2018-11-26 hep-th hep-ph

Hidden Sectors in String Theory: Kinetic Mixings, Fifth Forces and Quintessence

classification hep-th hep-ph
keywords interactionsboundsmodulisectorstringvisiblecompactificationfifth
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Light moduli fields in string compactifications can have interesting implications for particle physics and cosmology. Fifth force bounds impose stringent constraints on the interactions of such moduli with the visible sector. To be consistent with the bounds, they need to be part of hidden sectors which interact with the Standard Model with weaker-than-Planck suppressed interactions. We consider scenarios in which the visible sector degrees of freedom are localised in the compactification and light moduli arise as closed string degrees of freedom associated with hidden sectors which are geometrically separated (in the extra-dimensions) from the Standard Model. Kinetic mixings lead to interactions between the moduli and the visible sector - we compute these using Kaehler potentials of string/M-theory compactifications. We argue that in general these interactions provide a lower bound on the strength of the interactions between the moduli and the visible sector. The interactions scale with inverse powers of the volume of the compactification, thus fifth force bounds can be translated to lower bounds on the volume of the extra-dimensions. We find that compactification volumes have to be large to evade the bounds. This imposes interesting constraints on quintessence model building in string theory. Our results for the strength of the interactions can also be used to quantify the fine-tuning necessary for the stability of the potential of a light modulus against quantum corrections involving visible sector loops.

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Cited by 2 Pith papers

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  1. Dark Monopoles, Bounds on Hidden Sectors, and Cosmological Implications

    hep-ph 2026-07 conditional novelty 6.0

    Hidden-sector magnetic monopoles with symmetry-breaking scales above roughly 100 PeV over-close the Universe unless diluted by inflation or an early matter-dominated phase.

  2. Moduli Stabilisation for ADD and the Dark Dimension Scenario

    hep-th 2026-06 unverdicted novelty 5.0

    A perturbative stabilization mechanism in the Large Volume Scenario for K3-fibered Calabi-Yau threefolds generates exponentially large 2D base volumes while keeping the 4D fibre small, enabling ADD or Dark Dimension l...