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Monothlithic thin-film lithium niobate broadband spectrometer with one nanometre resolution
Engineering and TechnologyNature Communications

Monothlithic thin-film lithium niobate broadband spectrometer with one nanometre resolution

G. Finco, G. Li, et al.

Explore the innovative stationary-wave integrated Fourier-transform spectrometer developed by Giovanni Finco and colleagues at ETH Zurich, which boasts an impressive optical bandwidth of 325 nm and a theoretical spectral resolution of 1.2 nm. This cutting-edge design not only simplifies production but also integrates seamlessly with other photonic components, highlighting the future of optical technology.... show more
Abstract
Miniaturised optical spectrometers are attractive due to their small footprint, low weight, robustness and stability even in harsh environments such as space or industrial facilities. We report on a stationary-wave integrated Fourier-transform spectrometer featuring a measured optical bandwidth of 325 nm and a theoretical spectral resolution of 1.2 nm. We fabricate and test on lithium niobate-on-insulator to take full advantage of the platform, namely electro-optic modulation, broad transparency range and the low optical loss achieved thanks to matured fabrication techniques. We use the electro-optic effect and develop innovative layouts to overcome the undersampling limitations and improve the spectral resolution, thus providing a framework to enhance the performance of all devices sharing the same working principle. With our work, we add another important element to the portfolio of integrated lithium-niobate optical devices as our spectrometer can be combined with multiple other building blocks to realise functional, monolithic and compact photonic integrated circuits.
Publisher
Nature Communications
Published On
Mar 14, 2024
Authors
Giovanni Finco, Gaoyuan Li, David Pohl, Marc Reig Escalé, Andreas Maeder, Fabian Kaufmann, Rachel Grange
Tags
Fourier-transform spectrometerlithium niobate-on-insulatoroptical bandwidthspectral resolutionelectro-optic modulationmonolithic designphotonic components
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