2016Unpublished venueRequires access

New Physics in B0s → J/ψφ: a General Analysis

Alakabha Datta, Murugeswaran Duraisamy, David London, Makiko Nagashima, Ro Szynkman

Open publisher page 27 citations

Abstract

Recently, the CDF and D0 collaborations measured indirect CP violation in B 0 s → J/ψϕ and found a hint of a signal. If taken at face value, this can be interpreted as a nonzero phase of $$ B_s^0 - \overline B_s^0 $$ mixing (β s ), in disagreement with the standard model, which predicts that β s ≃ 0. In this paper, we argue that this analysis may be incomplete. In particular, there can be new physics (NP) in the $$ \overline b \to \overline s c\overline c $$ decay. If so, the value of β s is different than for the case in which NP is assumed to be present only in the mixing. We have examined several models of NP and found that, indeed, there can be significant contributions to the decay. These effects are consistent with measurements in B → J/ψK* and B 0 d → J/ψK S . Due to the NP in the decay, polarization-dependent indirect CP asymmetries and triple-product asymmetries are predicted in B 0 s → J/ψφ.

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What this paper is about

Recently, the CDF and D0 collaborations measured indirect CP violation in B 0 s → J/ψϕ and found a hint of a signal. If taken at face value, this can be interpreted as a nonzero phase of $$ B_s^0 - \overline B_s^0 $$ mixing (β s ), in disagreement with the standard model, which predicts that β s ≃ 0. In this paper, we argue that this analysis may be incomplete. In particular, there can be new physics (NP) in the $$ \overline b \to \overline s c\overline c $$ decay. If so, the value of β s is different than for the case in which NP is assumed to be present only in the mixing. We have examined several models of NP and found that, indeed, there can be significant contributions to the decay. These effects are consistent with measurements in B → J/ψK* and B 0 d → J/ψK S . Due to the NP in the decay, polarization-dependent indirect CP asymmetries and triple-product asymmetries are predicted in B 0 s → J/ψφ.

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Available abstract

Recently, the CDF and D0 collaborations measured indirect CP violation in B 0 s → J/ψϕ and found a hint of a signal. If taken at face value, this can be interpreted as a nonzero phase of $$ B_s^0 - \overline B_s^0 $$ mixing (β s ), in disagreement with the standard model, which predicts that β s ≃ 0. In this paper, we argue that this analysis may be incomplete. In particular, there can be new physics (NP) in the $$ \overline b \to \overline s c\overline c $$ decay. If so, the value of β s is different than for the case in which NP is assumed to be present only in the mixing. We have examined several models of NP and found that, indeed, there can be significant contributions to the decay. These effects are consistent with measurements in B → J/ψK* and B 0 d → J/ψK S . Due to the NP in the decay, polarization-dependent indirect CP asymmetries and triple-product asymmetries are predicted in B 0 s → J/ψφ.

Key concepts: Physics, Beta decay, Mixing (physics), Polarization (electrochemistry), Physics beyond the Standard Model, BETA (programming language), Particle physics, Nuclear physics

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