Quantum spin Hall insulators with arbitrary spin J support J+1/2 pairs of helical edge modes protected by mirror Chern numbers, described by a generalized Dirac fermion with higher-order dispersion and nonlinear transport.
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A topological model of microtubule caps with dynamical edge states reproduces peaked distributions of lengths at catastrophe and growth stuttering using two free parameters while providing an analytical description consistent with experiments across tubulin concentrations.
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Quantum higher-spin Hall insulators
Quantum spin Hall insulators with arbitrary spin J support J+1/2 pairs of helical edge modes protected by mirror Chern numbers, described by a generalized Dirac fermion with higher-order dispersion and nonlinear transport.
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Topological edge currents promote exploratory chromosome capture in microtubule dynamic instability
A topological model of microtubule caps with dynamical edge states reproduces peaked distributions of lengths at catastrophe and growth stuttering using two free parameters while providing an analytical description consistent with experiments across tubulin concentrations.