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CONSTRAINING NEW PHYSICS IN $B_{s}^0$ MESON MIXING
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Neutral mesons exhibit a phenomenon called flavour mixing. As a consequence of a second order weak process the flavour eigenstates corresponding to the meson and its anti-meson are superpositions of two mass eigenstates. A meson produced in a flavour state changes into an anti-meson and back again as a function of time. Such flavour oscillations are considered sensitive probes of physics beyond the Standard Model. In this brief review I summarize the status of experimental constraints on mixing parameters in the [Formula: see text] meson system.
Title: CONSTRAINING NEW PHYSICS IN $B_{s}^0$ MESON MIXING
Description:
Neutral mesons exhibit a phenomenon called flavour mixing.
As a consequence of a second order weak process the flavour eigenstates corresponding to the meson and its anti-meson are superpositions of two mass eigenstates.
A meson produced in a flavour state changes into an anti-meson and back again as a function of time.
Such flavour oscillations are considered sensitive probes of physics beyond the Standard Model.
In this brief review I summarize the status of experimental constraints on mixing parameters in the [Formula: see text] meson system.
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