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  • The VERITAS Collaboration; Acciari, V A; Aliu, E; Beilicke, M; Benbow, W; Boltuch, D; Böttcher, M; Bradbury, S M; Bugaev, V; Byrum, K; Cesarini, A; Ciupik, L; Cogan, P; Cui, W; Dickherber, R; Duke, C; Falcone, A; Finley, J P; Finnegan, G; tson, L; Furniss, A; Galante, N; Gall, D; Gibbs, K; Guenette, R; Gillanders, G H; Godambe, S; Grube, J; Hanna, D; Hui, C M; Humensky, T B; Imran, A; Kaaret, P; Karlsson, N; Kertzman, M; Kieda, D; Krawczynski, H; Krennrich, F; Lang, M J; LeBohec, S; Maier, G; McArthur, S; McCann, A; Moriarty, P; Nagai, T; Ong, R A; Otte, A N; Pandel, D; Perkins, J S; Pichel, A; Pohl, M; Quinn, J; Ragan, K; Reyes, L C; Reynolds, P T; Roache, E; Rose, H J; Schroedter, M; Sembroski, G H; Smith, A W; Steele, D; Swordy, S P; Theiling, M; Thibadeau, S; Vassiliev, V V; Vincent, S; Wakely, S P; Weekes, T C; Weinstein, A; Weisgarber, T; Williams, D A

    arXiv.org, 01/2010
    Paper, Journal Article

    We present results from an intensive VERITAS monitoring campaign of the high-frequency peaked BL Lac object 1ES 1218+304 in 2008/2009. Although 1ES 1218+304 was detected previously by MAGIC and VERITAS at a persistent level of ~6% of the Crab Nebula flux, the new VERITAS data reveal a prominent flare reaching ~20% of the Crab. While very high energy (VHE) flares are quite common in many nearby blazars, the case of 1ES 1218+304 (redshift z = 0.182) is particularly interesting since it belongs to a group of blazars that exhibit unusually hard VHE spectra considering their redshifts. When correcting the measured spectra for absorption by the extragalactic background light, 1ES 1218+304 and a number of other blazars are found to have differential photon indices less than 1.5. The difficulty in modeling these hard spectral energy distributions in blazar jets has led to a range of theoretical gamma-ray emission scenarios, one of which is strongly constrained by these new VERITAS observations. We consider the implications of the observed light curve of 1ES 1218+304, which shows day scale flux variations, for shock acceleration scenarios in relativistic jets, and in particular for the viability of kiloparsec-scale jet emission scenarios.