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Neutrinos from primordial black holes in theories with extra dimensions

Luis A. Anchordoqui, F. Halzen, Dieter Lüst

2025Physical review. D/Physical review. D.10 citationsDOIOpen Access PDF

Abstract

The quantum gravity scale within the dark dimension scenario ( <a:math xmlns:a="http://www.w3.org/1998/Math/MathML" display="inline"> <a:mrow> <a:msub> <a:mrow> <a:mi>M</a:mi> </a:mrow> <a:mrow> <a:mo>*</a:mo> </a:mrow> </a:msub> <a:mo>∼</a:mo> <a:msup> <a:mrow> <a:mn>10</a:mn> </a:mrow> <a:mrow> <a:mn>9</a:mn> </a:mrow> </a:msup> <a:mtext> </a:mtext> <a:mtext> </a:mtext> <a:mi>GeV</a:mi> </a:mrow> </a:math> ) roughly coincides with the energy scale of the KM3-230213A neutrino ( <c:math xmlns:c="http://www.w3.org/1998/Math/MathML" display="inline"> <c:mrow> <c:msub> <c:mrow> <c:mi>E</c:mi> </c:mrow> <c:mrow> <c:mi>ν</c:mi> </c:mrow> </c:msub> <c:mo>∼</c:mo> <c:msup> <c:mrow> <c:mn>10</c:mn> </c:mrow> <c:mrow> <c:mn>8</c:mn> </c:mrow> </c:msup> <c:mtext> </c:mtext> <c:mtext> </c:mtext> <c:mi>GeV</c:mi> </c:mrow> </c:math> ). We propose an interpretation for this intriguing coincidence in terms of Hawking evaporation of five-dimensional (5D) primordial black holes (PBHs). 5D PBHs are bigger, colder, and longer-lived than 4D PBHs of the same mass. For brane observers, PBHs residing in the higher-dimensional bulk decay essentially invisibly (only through gravitationally and sterile coupled modes). As a consequence, constraints on the density of PBHs relative to that of dark matter from null searches of Hawking evaporation can be avoided. We demonstrate that Hawking evaporation of 5D bulk PBHs can explain the KM3-230213A neutrino, evade constraints from upper limits on the gamma-ray flux, and remain consistent with IceCube upper limits on the partial decay width of superheavy dark matter particles into neutrinos.

Topics & Concepts

PhysicsPrimordial black holeHawking radiationDark matterLarge extra dimensionExtra dimensionsMicro black holeHawkingNeutrinoParticle physicsWarm dark matterHot dark matterBlack hole (networking)AstrophysicsStandard Model (mathematical formulation)Cold dark matterEvaporationScalar field dark matterMixed dark matterWeakly interacting massive particlesUniverseLight dark matterSterile neutrinoSonic black holeYield (engineering)Scale (ratio)Dimension (graph theory)Dark fluidBinary black holeDark energyEvent (particle physics)GravitationBlack Holes and Theoretical PhysicsCosmology and Gravitation TheoriesParticle physics theoretical and experimental studies
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