Data-driven design approaches based on deep learning have been introduced in nanophotonics to reduce time-consuming iterative simulations, which have been a major challenge. Here, we report the first use of conditional deep convolutional generative adversarial networks to design nanophotonic antennae that are not constrained to predefined shapes. For given input reflection spectra, the network generates desirable designs in the form of images; this allows suggestions of new structures that cannot be represented by structural parameters. Simulation results obtained from the generated designs agree well with the input reflection spectrum. This method opens new avenues toward the development of nanophotonics by providing a fast and convenient ...
10 pages, 9 figuresInternational audienceDeep learning is a promising, ultra-fast approach for inver...
10 pages, 9 figuresInternational audienceDeep learning is a promising, ultra-fast approach for inver...
Review article of 17 pages, 7 figures, 4 info-boxesInternational audienceDeep learning in the contex...
Data-driven design approaches based on deep learning have been introduced in nanophotonics to reduce...
Deep learning is a promising, ultra-fast approach for inverse design in nano-optics, but despite fas...
Deep learning has become the dominant approach in artificial intelligence to solve complex data-driv...
A central challenge in contemporary materials and photonics research is understanding how intrinsic ...
A central challenge in contemporary materials and photonics research is understanding how intrinsic ...
Reaching the true potential of nanophotonic devices requires the broadband control of spectral and a...
Reaching the true potential of nanophotonic devices requires the broadband control of spectral and a...
23 pages, 15 figuresNanophotonic devices manipulate light at sub-wavelength scales, enabling tasks s...
We present our work on using deep neural networks for the prediction of the optical properties of na...
We present our work on using deep neural networks for the prediction of the optical properties of na...
23 pages, 15 figuresNanophotonic devices manipulate light at sub-wavelength scales, enabling tasks s...
10 pages, 9 figuresDeep learning is a promising, ultra-fast approach for inverse design in nano-opti...
10 pages, 9 figuresInternational audienceDeep learning is a promising, ultra-fast approach for inver...
10 pages, 9 figuresInternational audienceDeep learning is a promising, ultra-fast approach for inver...
Review article of 17 pages, 7 figures, 4 info-boxesInternational audienceDeep learning in the contex...
Data-driven design approaches based on deep learning have been introduced in nanophotonics to reduce...
Deep learning is a promising, ultra-fast approach for inverse design in nano-optics, but despite fas...
Deep learning has become the dominant approach in artificial intelligence to solve complex data-driv...
A central challenge in contemporary materials and photonics research is understanding how intrinsic ...
A central challenge in contemporary materials and photonics research is understanding how intrinsic ...
Reaching the true potential of nanophotonic devices requires the broadband control of spectral and a...
Reaching the true potential of nanophotonic devices requires the broadband control of spectral and a...
23 pages, 15 figuresNanophotonic devices manipulate light at sub-wavelength scales, enabling tasks s...
We present our work on using deep neural networks for the prediction of the optical properties of na...
We present our work on using deep neural networks for the prediction of the optical properties of na...
23 pages, 15 figuresNanophotonic devices manipulate light at sub-wavelength scales, enabling tasks s...
10 pages, 9 figuresDeep learning is a promising, ultra-fast approach for inverse design in nano-opti...
10 pages, 9 figuresInternational audienceDeep learning is a promising, ultra-fast approach for inver...
10 pages, 9 figuresInternational audienceDeep learning is a promising, ultra-fast approach for inver...
Review article of 17 pages, 7 figures, 4 info-boxesInternational audienceDeep learning in the contex...