Papers › Measuring complex refractive index through deeplearning-enabled optical reflectometry

Measuring complex refractive index through deeplearning-enabled optical reflectometry

31 Mar 20232D Materials 2023 3archive 2025-07-28

Ziyang Wang, Yuxuan Cosmi Lin, Kunyan Zhang, Wenjing Wu and Shengxi Huang

Optical spectroscopy is indispensable for research and development in nanoscience and nanotechnology, microelectronics, energy, and advanced manufacturing. Advanced optical spectroscopy tools often require both specifically designed high-end instrumentation and intricate data analysis techniques. Beyond the common analytical tools, deep learning methods are well suited for interpreting high-dimensional and complicated spectroscopy data. They offer great opportunities to extract subtle and deep information about optical properties of materials with simpler optical setups, which would otherwise require sophisticated instrumentation. In this work, we propose a computational approach based on a conventional tabletop optical microscope and a deep learning model called ReflectoNet. Without any prior knowledge about the multilayer substrates, ReflectoNet can predict the complex refractive indices of thin films and 2D materials on top of these nontrivial substrates from experimentally measured optical reflectance spectra with high accuracies. This task was not feasible previously with traditional reflectometry or ellipsometry methods. Fundamental physical principles, such as the Kramers–Kronig relations, are spontaneously learned by the model without any further training. This approach enables in-operando optical characterization of functional materials and 2D materials within complex photonic structures or optoelectronic devices.

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Hyperspectral image analysis

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Reflectance_Refractive index_Simple

Results from the paper archive 2025-07-28

TaskDatasetModelMetricValueRank at snapshotLeaderboardReport
Hyperspectral image analysis complex refractive index through reflection ReflectoNet Pearson correlation coefficient (PCC) 0.91 #1 of 1 Archive leaderboard report
Hyperspectral image analysis complex refractive index through reflection ReflectoNet RMSPE 0.83 #1 of 1 Archive leaderboard report

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