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Observing a focused weak shock wave perform a Hilbert transform

Miguel A. Alonso1,2,* and Pedro A. Quinto-Su3,†

  • *Contact author: miguel.alonso@fresnel.fr
  • †Contact author: pedro.quinto@nucleares.unam.mx

Phys. Rev. E 113, L052203 – Published 22 May, 2026

DOI: https://doi.org/10.1103/1zkc-3gs7

Abstract

The spatial profile of several types of focusing two-dimensional shock waves (weak shock regime) created in a thin liquid gap are imaged using a shadowgraph with strobe photography. Their profiles before and after focusing are shown to constitute approximately a Hilbert transform pair, regardless of the range of directional angles involved in the focusing and of whether the focusing is at a single point or an extended caustic. This Hilbert transform relation, observable here from a single image or a pair of images, can be explained in terms of the π/2 Gouy phase shift for focused waves in two dimensions, as was shown elsewhere with experiments involving terahertz pulses in the time domain.

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