activity
20212023
most citedA unified framework for linear thermo-visco-elastic wave propagation including the effects of stress-relaxation

4 citations · 4 across the 5 of their papers we have counts for

collaborators

5 papers

math.AP2023

Diffraction by a right-angled no-contrast penetrable wedge: recovery of far-field asymptotics

Valentin D. Kunz, Raphael C. Assier

We provide a description of the far-field encountered in the diffraction problem resulting from the interaction of a monochromatic plane-wave and a right-angled no-contrast penetra…

math.AP2023

A contribution to the mathematical theory of diffraction. Part II: Recovering the far-field asymptotics of the quarter-plane problem

Raphael C. Assier, Andrey V. Shanin, Andrey I. Korolkov

We apply the stationary phase method developed in (Assier, Shanin \& Korolkov, QJMAM, 76(1), 2022) to the problem of wave diffraction by a quarter-plane. The wave field is written…

physics.class-ph2023

High-order homogenisation of the time-modulated wave equation: non-reciprocity for a single varying parameter

Marie Touboul, Bruno Lombard, Raphaël Assier +2

Laminated media with material properties modulated in space and time in the form of travelling waves have long been known to exhibit non-reciprocity. However, when using the method…

physics.class-ph20224 cited

A unified framework for linear thermo-visco-elastic wave propagation including the effects of stress-relaxation

Erik García Neefjes, David Nigro, Artur L. Gower +3

We present a unified framework for the study of wave propagation in homogeneous linear thermo-visco-elastic (TVE) continua, starting from conservation laws. In free-space such medi…

math-ph2021

Diffraction by a Right-Angled No-Contrast Penetrable Wedge Revisited: A Double Wiener-Hopf Approach

Valentin D. Kunz, Raphael C. Assier

In this paper, we revisit Radlow's innovative approach to diffraction by a penetra ble wedge by means of a double Wiener-Hopf technique. We provide a constructive way of obtaining…