Shear mode transport coefficients from multiple polylogarithms
Abstract
We present an analytical study of the transport coefficients associated with the shear sector of gravitational perturbations around asymptotically anti-de Sitter black branes. In the long-wavelength, low-frequency limit, the wave solutions admit a structure that is fully described in terms of multiple polylogarithms in several variables. We focus primarily on computing the transport coefficients for N=4 SYM, by performing a bulk computation in the five-dimensional black hole background up to order q10, which extends the results previously available in the literature. We then generalise the procedure to d+1 dimensions, characterising the mathematical structure of the resulting transport coefficient expressions.
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