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Probe of the Anomalous Quartic Couplings with Beam Polarization at the CLIC

Published 3 Mar 2016 in hep-ph | (1603.01065v2)

Abstract: We have investigated the anomalous quartic couplings defined by the dimension-8 operators in semileptonic decay channel of the $e{+}e{-}\rightarrow \nu_{e} W{-} W{+} \bar{\nu}{e}$ process for unpolarized and polarized electron (positron) beam at the Compact Linear Collider. We give the $95\%$ confidence level bounds on anomalous $\frac{f{S0}}{\Lambda{4}}$, $\frac{f_{S1}}{\Lambda{4}}$ and $\frac{f_{T0}}{\Lambda{4}}$ couplings for various values of the integrated luminosities and center-of-mass energies. The best sensitivities obtained on anomalous $\frac{f_{S0}}{\Lambda{4}}$, $\frac{f_{S1}}{\Lambda{4}}$ and $\frac{f_{T0}}{\Lambda{4}}$ couplings through the process $e{+}e{-}\rightarrow \nu_{e} W{-} W{+} \bar{\nu}{e}$ with beam polarization at $\sqrt{s}=3$ TeV and an integrated luminosity of $L{int}=2000$ fb${-1}$ are $[-4.05;\, 3.67]\times 10{-12}$ GeV${-4}$, $[-3.08; \, 2.12]\times 10{-12}$ GeV${-4}$, $[-1.98; \, 0.64]\times 10{-13}$ GeV${-4}$, which show improvement over the current bounds.

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