Observational Evidence for Self-Interacting Cold Dark Matter

Наблюдательные свидетельства самовзаимодействующей холодной темной материи
Paul J. Steinhardt, David N. Spergel
2000-04-24

density cores of galaxies and clustersnegligible annihilation or dissipationscattering cross sectionself-interacting cold dark mattersubhalo abundance problem
Cosmological models with cold dark matter composed of weakly interacting particles predict overly dense cores in the centers of galaxies and clusters and an overly large number of halos within the Local Group compared to actual observations. We propose that the conflict can be resolved if the cold dark matter particles are self-interacting with a large scattering cross section but negligible annihilation or dissipation. In this scenario, astronomical observations may enable us to study dark matter properties that are inaccessible in the laboratory.
1
If dark matter is self-interacting as proposed, astronomical observations can probe dark matter properties that laboratory experiments cannot access.
2
Introducing self-interactions among cold dark matter particles with a large scattering cross section (but negligible annihilation or dissipation) can resolve these observational conflicts.
3
Standard CDM also predicts an overly large number of halos within the Local Group relative to what is observed.
4
Standard cold dark matter (CDM) models with weakly interacting particles predict cores that are too dense in galaxy and cluster centers compared to observations.

Cold dark matter composed of weakly interacting particles with large self-interaction cross section

Effects of particle self-interactions (large scattering cross section, negligible annihilation/dissipation) on galactic and cluster core densities and halo abundances compared to observations

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2000-04-24
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Paul J. Steinhardt
David N. Spergel
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