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physics.optics2026

Fabrication-Aware Inverse Design of Nanophotonic Devices for 3D Laser-Nanoprinting

Oliver Kuster, Tim Alletzhäusser, Carsten Rockstuhl +2

Advances in 3D laser-nanoprinting enable us to fabricate 3D nanophotonic devices with a wide range of functionalities on demand. By exploiting all three spatial dimensions, an enor…

physics.optics2025

Gradient-based optimization of scatterer arrangements based on the T-matrix method

Nigar Asadova, Jan David Fischbach, Renaud Vallée +6

The demand for inverse design is increasing as the ability to fabricate sub-10 nm features expands the design space by orders of magnitude. Efficient inverse design benefits from d…

physics.optics2025

A three-dimensional polarization-insensitive grating coupler tailored for 3D nanoprinting

Oliver Kuster, Yannick Augenstein, Carsten Rockstuhl +1

Efficiently coupling light from optical fibers into photonic integrated circuits is a key step toward practical photonic devices. While a notable coupling can be achieved by out of…

physics.optics2025

Inverse Design of 3D Nanophotonic Devices with Structural Integrity Using Auxiliary Thermal Solvers

Oliver Kuster, Yannick Augenstein, Roberto Narváez Hernández +2

3D additive manufacturing enables the fabrication of nanophotonic structures with subwavelength features that control light across macroscopic scales. Gradient-based optimization o…

physics.optics2024

Inverse Design of Polaritonic Devices

Oliver Kuster, Yannick Augenstein, Carsten Rockstuhl +1

Polaritons, arising from the strong coupling between excitons and photons within microcavities, hold promise for optoelectronic and all-optical devices. They have found application…