Publication | Open Access
High-performance, intelligent, on-chip speckle spectrometer using 2D silicon photonic disordered microring lattice
39
Citations
44
References
2023
Year
Photonic SensorSilicon PhotonicEngineeringHigh-performance Integrated SpectrometersMicroscopyMicroring LatticeIntegrated CircuitsMicro-optical ComponentOptical CharacterizationProgrammable PhotonicsOptical SensorPhotonic Integrated CircuitBiophysicsNanophotonicsPhotonicsPhysicsPhotonic MaterialsBiophotonicsSpeckle PatternsPhotonic DeviceOptical SensorsMicrofabricationBiomedical DiagnosticsSpectroscopyApplied PhysicsOn-chip Speckle SpectrometerMedicineOptoelectronics
High-performance integrated spectrometers are highly desirable for applications ranging from mobile phones to space probes. Based on silicon photonic integrated circuit technology, we propose and demonstrate an on-chip speckle spectrometer consisting of a 15×15, 2D disordered microring lattice. The proposed 2D, disordered microring lattice was simulated by the transfer-matrix method. The fabricated device featured a spectral resolution better than 15 pm and an operating bandwidth larger than 40 nm. We also demonstrated that, based on the speckle patterns, our device can perform a spectrum classification using machine learning algorithms, which will have a huge potential in fast, intelligent material and chemical analysis.
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