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We consider extensions of the standard model based on open strings ending on D-branes, with gauge bosons due to strings attached to stacks of D-branes and chiral matter due to strings stretching between intersecting D-branes.
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J. Pumplin, D. R. Stump, J. Huston, H. L. Lai, P. Nadolsky and W. K. Tung, JHEP 0207
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Four fermion channels were used previously to obtain model dependent bounds on M s M_{s} . See e.g., S. Cullen M. Perelstein and M. E. Peskin, Phys. Rev. D 62
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The synthetic population was generated with Pythia, passed through the full CMS detector simulation and reconstructed with the ORCA reconstruction package; S. Esen and R. Harris, CMS Note 2006/071
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For a review, see: R. Blumenhagen, B. Kors, D. Lüst and S. Stieberger, Phys. Rept. 445
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D. Lüst, S. Stieberger and T.R. Taylor, arXiv:0807.3333 [hep-th]
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The approximate equality of the background due to misidentified π 0 \pi^{0} ’s and the QCD background, across a range of large p T γ p_{T}^{\gamma} as implemented in Ref. Anchordoqui:2008ac , is maintained as an approximate equality over a range of invariant γ \gamma -jet invariant masses with the rapidity cuts imposed
Cited in the paper.
Note that the string scale is an optimal choice of the running scale which should normally minimize the role of higher loop corrections
Cited in the paper.
Because of the high multiplicity of the angular momenta (up to J = 2 J=2 ), the rapidity distribution of the decay products of string excitations would differ significantly from those following decay of a Z ′ Z^{\prime} with J = 1 J=1 . With higher statistics, isolation of lowest massive Regge excitations from Kaluza-Klein replicas (with J = 2 J=2 ) may also be possible
Cited in the paper.
G. L. Bayatian et al
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L. A. Anchordoqui, H. Goldberg, S. Nawata and T. R. Taylor, Phys. Rev. Lett. 100
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L. A. Anchordoqui, H. Goldberg, S. Nawata and T. R. Taylor, Phys. Rev. D 78
2013
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