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- W2093558708 abstract "We consider models with a gauged U(1)ensuremath{'}, to which is coupled a fermionic standard-model singlet $ensuremath{psi}$. If $ensuremath{psi}'mathrm{s}$ close the Universe, a Lee-Weinberg calculation gives the four-fermion coupling ${G}^{ensuremath{'}}$ from the mass ${m}_{ensuremath{psi}}$. We can then calculate the germanium scattering cross section as a function of ${m}_{ensuremath{psi}}$. The results are nearly model independent and close to experimental limits for $10 mathrm{GeV}ensuremath{le}{m}_{ensuremath{psi}}ensuremath{le}100 mathrm{GeV}$. In the region $400 mathrm{GeV}ensuremath{le}{m}_{ensuremath{psi}}ensuremath{le}40 mathrm{TeV}$ the scattering cross section depends on ${M}_{{Z}^{ensuremath{'}}}$, and again approaches experimental limits if ${M}_{{Z}^{ensuremath{'}}}ensuremath{le}2$ TeV." @default.
- W2093558708 created "2016-06-24" @default.
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- W2093558708 date "1990-02-15" @default.
- W2093558708 modified "2023-10-18" @default.
- W2093558708 title "U(1)′ dark matter" @default.
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- W2093558708 doi "https://doi.org/10.1103/physrevd.41.1067" @default.
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