Using an effective interaction approach to describe the interactions between the dark matter particle and the light degrees of freedom of the standard model, we calculate the gamma-ray flux due to the annihilation of the dark matter into quarks, followed by fragmentation into neutral pions which subsequently decay into photons. By comparison to the mid-latitude data released from the Fermi-LAT experiment, we obtain useful constraints on the size of the effective interactions and they are found to be comparable to those deduced from collider, gamma-ray line and anti-matter search experiments. However, the two operators induced by scalar and vector exchange among fermionic dark matter and light quarks that contribute to spin-independent cross sections are constrained more stringently by the recent XENON100 data.
@article{arxiv.1104.5329,
title = {Gamma-ray Constraints on Effective Interactions of the Dark Matter},
author = {Kingman Cheung and Po-Yan Tseng and Tzu-Chiang Yuan},
journal= {arXiv preprint arXiv:1104.5329},
year = {2011}
}
Comments
22 pages, 4 figures; title fixed and a couple of references added