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Fredrik Persson

Publications and source records attributed to Fredrik Persson.

3 recordsLinked to original sources

Isotropic diffusion of the small ribosomal subunit in Escherichia coli

The ribosome is one of the most important macromolecular complexes in a living cell. We have tracked individual 30S ribosomal subunits in exponentially growing E. coli cells using three-dimensional single-particle tracking, where the z-position is estimated using astigmatism. The 30S subunits are stochiometrically labeled with S2-mEos2 by replacing the rpsB gene in the E. coli chromosome by rpsB-mEos2. The spatial precision in tracking is 20 nm in xy and 70 nm in z. The average trajectory consists of 4 steps corresponding to 80 ms. The trajectories are excluded from parts of the cell, consistent with nucleoid exclusion, and display isotropic diffusion with nearly identical apparent diffusion coefficients (0.05 +/- 0.01 um^2/s) in x, y and z. The tracking data fits well to a two-state diffusion model where 46% of the molecules are diffusing at 0.02 um^2/s and 54% are diffusing at 0.14 um^2/s. These states could correspond to translating 70S ribosomes and free 30S subunits.

q-bio.QM

$K\to3π$ Decays in Chiral Perturbation Theory

The CP conserving amplitudes for the decays $K\to3π$ are calculated in Chiral Perturbation Theory at the next-to-leading order. We present the expressions in a compact form with single parameter functions only. These expressions are then fitted to all available $K\to2π$ and $K\to3π$ data to obtain a fit of the parameters that occur. We compare with the work of Kambor, Missimer and Wyler.

hep-ph

Effects of different Form-factors in Meson-Photon-Photon Transitions and the Muon Anomalous Magnetic Moment

The exact form of the form-factor associated with a meson-photon-photon vertex is not known. Different suggestions exist, based on constraints from QCD and on recent experiments. Four different form-factors are studied in this article. We calculate decay rates for the decays $π^{0}\to γγ$, $η\to γe^{+}e^{-}$, $η\to μ^{+}μ^{-} e^{+}e^{-}$} and $η\to e^{+}e^{-} e^{+}e^{-}$ and cross sections for the processes $e^{+}e^{-}\to PS e^{+}e^{-}$, where $PS=π^{0}$, $η$ or $η'$. The results depend on the choice of form-factor and we examine if the differences are large enough to distinguish in upcoming experiments. The dominant part of the light-by-light contribution to the muon anomalous magnetic moment is also calculated. Here the uncertainty around the choice of form-factor implies that it is possible to estimate a smallest error in the theoretical value of this contribution.

hep-ph