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Polarization and quantum entanglement effects in $B^\pm_c\to J/\psi+\pi^\pm +\pi^0$ process
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abstract
Motivated by the very recent observation of the $B^+_c\to J/\psi+\pi^+ +\pi^0$ decay using proton-proton collision data by the LHCb collaboration, we study the four-body angular distributions and the quantum entanglement effects in the $B^+_c\to J/\psi+\pi^+ +\pi^0$ associated with $J/\psi\to \mu^++\mu^-$. The helicity angular distributions are given in the QCD effective theory and the von Neumann entropy is obtained in $B^\pm_c\to J/\psi(\to \mu^+\mu^-)+\rho^\pm(\to \pi^\pm \pi^0)$ decay process.
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Cited by 1 Pith paper
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Quantum Entanglement Autodistillation in Baryon Pair Decays
Weak decays of spin-1/2 baryon-antibaryon pairs into a spin-1/2 baryon and a spin-0 meson can probabilistically increase the pair's spin entanglement, with the effect controlled by the decay asymmetry parameter alphaD.
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