Inverse design of mirror-symmetric disordered systems for broadband perfect transmission
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arXiv
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| Main Authors: | , , , , |
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| Format: | Preprint |
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2025
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| _version_ | 1866912357886722048 |
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| author | Zhumabay, Zhazira Ferise, Clément Pagneux, Vincent Rotter, Stefan Davy, Matthieu |
| author_facet | Zhumabay, Zhazira Ferise, Clément Pagneux, Vincent Rotter, Stefan Davy, Matthieu |
| contents | We present a framework for achieving broadband perfect wave transmission in complex systems by optimizing symmetric disordered media via inverse design. We show that leveraging symmetry of complex media reduces the optimization's complexity enabling the incorporation of additional constraints in the parameter space. Starting from a single perfectly transmitting state with predefined input and output wavefronts at a specific frequency, we progressively broaden the bandwidth - from a reflectionless exceptional point with a flattened lineshape to narrowband filters and ultimately to broadband quasi-perfect transmission exhibiting a rainbow effect. Numerical simulations based on the coupled dipole approximation are validated experimentally in a multichannel microwave waveguide with dielectric and metallic scatterers. Finally, we demonstrate broadband enhanced wave transmission through barriers highlighting the potential for advanced wave control applications. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2505_01220 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Inverse design of mirror-symmetric disordered systems for broadband perfect transmission Zhumabay, Zhazira Ferise, Clément Pagneux, Vincent Rotter, Stefan Davy, Matthieu Optics Disordered Systems and Neural Networks Applied Physics We present a framework for achieving broadband perfect wave transmission in complex systems by optimizing symmetric disordered media via inverse design. We show that leveraging symmetry of complex media reduces the optimization's complexity enabling the incorporation of additional constraints in the parameter space. Starting from a single perfectly transmitting state with predefined input and output wavefronts at a specific frequency, we progressively broaden the bandwidth - from a reflectionless exceptional point with a flattened lineshape to narrowband filters and ultimately to broadband quasi-perfect transmission exhibiting a rainbow effect. Numerical simulations based on the coupled dipole approximation are validated experimentally in a multichannel microwave waveguide with dielectric and metallic scatterers. Finally, we demonstrate broadband enhanced wave transmission through barriers highlighting the potential for advanced wave control applications. |
| title | Inverse design of mirror-symmetric disordered systems for broadband perfect transmission |
| topic | Optics Disordered Systems and Neural Networks Applied Physics |
| url | https://arxiv.org/abs/2505.01220 |