Strong Evidence for Gamma-ray Line Emission from the Inner Galaxy
Abstract
Using 3.7 years of \Fermi-LAT data, we examine the diffuse 80-200 GeV emission in the inner Galaxy and find a resolved gamma-ray feature at GeV. We model the spatial distribution of this emission with a FWHM Gaussian, finding a best fit position West of the Galactic Center. Even better fits are obtained for off-center Einasto and power-law profiles, which are preferred over the null (no line) hypothesis by ( after trials factor correction for one/two line case) assuming an NFW density profile centered at with a power index . The energy spectrum of this structure is consistent with a single spectral line (at energy GeV with for 4 d.o.f.). A pair of lines at GeV and GeV provides a marginally better fit (with for 2 d.o.f.). The total luminosity of the structure is erg/s, or photons/sec. The energies in the two-line case are compatible with a GeV WIMP annihilating through and (with for 3 d.o.f.). We describe a possible change to the \Fermi\ scan strategy that would accumulate S/N on spectral lines in the Galactic center 4 times as fast as the current survey strategy.
Keywords
Cite
@article{arxiv.1206.1616,
title = {Strong Evidence for Gamma-ray Line Emission from the Inner Galaxy},
author = {Meng Su and Douglas P. Finkbeiner},
journal= {arXiv preprint arXiv:1206.1616},
year = {2012}
}
Comments
19 pages, 23 figures; version 2 includes higher significance detections for off-center Einasto and NFW profiles, and additional validation tests