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An integral equation for Root's barrier and the generation of Brownian increments

Abstract. We derive a nonlinear integral equation to calculate Root's solution of the Skorokhod embedding problem for atom-free target measures. We then use this to efficiently generate bounded time-space increments of Brownian motion and give a parabolic version of Muller's classic ``Random walk over spheres'' algorithm.

Back to the publication list of Aleksandar Mijatović.