Posted:
June 16, 2026
Location:
France, Grand Est, France

Job Description

Topic description

The paradigm of topology has profoundly impacted condensed matter physics in recent years. This paradigm has been successfully extended to photonics and acoustics. A key outcome is the emergence of topologically protected edge, surface, and corner states, which exhibit remarkable robustness against defects and disorder.

This framework has been enabled by phononic crystals and acoustic metamaterials which are engineered structures offering unprecedented control over wave propagation. In acoustics, their macroscopic nature and experimental accessibility provide an ideal platform to explore novel wave phenomena while targeting concrete technological applications. Topological acoustic systems already enable robust waveguiding, delay lines, and offer strong potential for phononic circuits immune to fabrication imperfections. In elastodynamics, they support defect-immune guided modes relevant for optomechanics, on-chip acousto-optic modulation...

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Submit your application for the Non-Hermitian Topological Acoustic Metamaterials for Robust Wave Control position at Institut Jean Lamour - CNRS - Université de Lorraine.

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Job Overview

Job Type: Full-time
Location: France, France
Posted: June 16, 2026
Deadline: July 26, 2026