Ultra-compact X-shaped waveguide crossings with flexible angles based on inverse design

Z Dong, J Qiu, Y Chen, C Liu, H Guo, W Zhang, Z He… - Optics …, 2021 - opg.optica.org
When photonics integrated circuits (PICs) become more massive in scale, the area of chip
can't be taken full advantage of with 2× 2 waveguide crossings with a 90° intersection angle …

Ultra-compact X-shaped waveguide crossings with flexible angles based on inverse design

Z Dong, J Qiu, Y Chen, C Liu, H Guo… - Optics …, 2021 - pubmed.ncbi.nlm.nih.gov
When photonics integrated circuits (PICs) become more massive in scale, the area of chip
can't be taken full advantage of with 2× 2 waveguide crossings with a 90° intersection angle …

[PDF][PDF] Ultra-compact X-shaped waveguide crossings with flexible angles based on inverse design

Z DONG, J QIU, Y CHEN, C LIU, H GUO, W ZHANG… - 2021 - researchgate.net
When photonics integrated circuits (PICs) become more massive in scale, the area of chip
can't be taken full advantage of with 2× 2 waveguide crossings with 90 intersection angle …

[引用][C] Ultra-compact X-shaped waveguide crossings with flexible angles based on inverse design

Z Dong, J Qiu, Y Chen, C Liu, H Guo… - Optics …, 2021 - ui.adsabs.harvard.edu
Ultra-compact X-shaped waveguide crossings with flexible angles based on inverse design -
NASA/ADS Now on home page ads icon ads Enable full ADS view NASA/ADS Ultra-compact …

Ultra-compact X-shaped waveguide crossings with flexible angles based on inverse design.

Z Dong, J Qiu, Y Chen, C Liu, H Guo, W Zhang… - Optics …, 2021 - europepmc.org
When photonics integrated circuits (PICs) become more massive in scale, the area of chip
can't be taken full advantage of with 2× 2 waveguide crossings with a 90 intersection angle …