Return
Multi-mode interference waveguide chip-scale spectrometer (invited)
DOI:10.1063/5.0222100.png)
Abstract
En 中文
Spectral analysis of light is one of the oldest and most versatile scientific methods and the basis of countless techniques and instruments. Miniaturized spectrometers have recently seen great advances, but challenges remain before they are widely deployed. We report an integrated photonic spectrometer that achieves high performance with minimal component complexity by combining imaging of light propagation patterns in multi-mode interference waveguides with machine learning analysis. We demonstrate broadband operation in the visible and near-infrared, 0.05 nm spectral resolution, and an array of four spectrometers on a single chip. Two canonical applications are implemented: spectral analysis of the solar spectrum with neural network reconstruction and detection of Rayleigh scattering from microbeads on an optofluidic chip using principal component classification. These results illustrate the potential of this approach for high-performance spectroscopy across disciplines.
Keywords:
HIGH-RESOLUTION
SPECTROSCOPY
Journal
IF:
5.3
Papers:
1.5K
Citations:
5.5K
Organization
Cited Papers
Concept of a high-resolution miniature spectrometer using an integrated filter array
OPTICS LETTERS
IF3.3
High-resolution Fourier-transform spectrometer chip with microphotonic silicon spiral waveguides
OPTICS LETTERS
IF3.3

