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Geometric responses of the Pfaffian state

Published 25 Feb 2019 in cond-mat.str-el, hep-th, math-ph, and math.MP | (1902.09563v2)

Abstract: We define and study the Pfaffian state on Riemann surfaces with arbitrary metrics and an inhomogeneous magnetic field and derive its universal transport coefficients. Following a path integral approach, we compute the generating functional which encodes the linear response of the system to a variation of the background metric and the magnetic field and use it to compute the leading and sub-leading corrections to the charge density in a large-NN expansion. We also present the first derivation of gravitational anomaly contribution at O(k<sup>6)(k<sup>6) to the static structure factor for the Pfaffian state in the long wavelength limit.

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