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Title: Discovering hidden sectors with monophoton Z{sup '} searches

Journal Article · · Physical Review. D, Particles Fields
; ; ;  [1]
  1. Department of Physics and Astronomy, Rutgers University, Piscataway, New Jersey 08854 (United States)

In many theories of physics beyond the standard model, from extra dimensions to Hidden Valleys and models of dark matter, Z{sup '} bosons mediate between standard model particles and hidden sector states. We study the feasibility of observing such hidden states through an invisibly decaying Z{sup '} at the LHC. We focus on the process pp{yields}{gamma}Z{sup '}{yields}{gamma}XX{sup {dagger}}, where X is any neutral, (quasi-) stable particle, whether a standard model neutrino or a new state. This complements a previous study using pp{yields}ZZ{sup '}{yields}l{sup +}l{sup -}XX{sup {dagger}}. Only the Z{sup '} mass and two effective charges are needed to describe this process. If the Z{sup '} decays invisibly only to standard model neutrinos, then these charges are predicted by observation of the Z{sup '} through the Drell-Yan process, allowing discrimination between Z{sup '} decays to standard model {nu}'s and invisible decays to new states. We carefully discuss all backgrounds and systematic errors that affect this search. We find that hidden sector decays of a 1 TeV Z{sup '} can be observed at 5{sigma} significance with 50 fb{sup -1} at the LHC. Observation of a 1.5 TeV state requires super-LHC statistics of 1 ab{sup -1}. Control of the systematic errors, in particular, the parton distribution function uncertainty of the dominant Z{gamma} background, is crucial to maximize the LHC search reach.

OSTI ID:
21254635
Journal Information:
Physical Review. D, Particles Fields, Vol. 78, Issue 9; Other Information: DOI: 10.1103/PhysRevD.78.095002; (c) 2008 The American Physical Society; Country of input: International Atomic Energy Agency (IAEA); ISSN 0556-2821
Country of Publication:
United States
Language:
English

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