A near-infrared spectrometer based on offset fused multimode fiber (MMF) is investigated in this study. The light spectrum is recovered by analyzing the speckle images when light is passing...
In this work, we provide experimental measurement data on the stability of representative rectangular core shaped fibre as well as a preliminary pre-development of a 2DSH fibre bundle.
In this study, we designed a novel spectrally resolved fiber photometry system that can be used for high-speed simultaneous measurement of multiple fluorophores between the UV (350 nm) and IR (1100
The baseline KPF spectrometer design is shown in the following figure. Light enters the core spectrometer following the fiber image reformatter, at the focal point of the primary collimator mirror
In particular, the identification of various ion distributions at the fiber cross-section with nanometer accuracy is required. For this purpose, the classical depth profiling mode of the
Parallel spectroscopy in the visible spectral range is applied in various analytical tasks ranging from industrial inspection via digital farming to life sciences. To address parallel distributed sensing
In this paper, we theoretically and experimentally demonstrate an AI-assisted MMF spectrometer, and examine the limits of the method. The resolution of the spectrometer reached 0.1
To allow it to achieve its goals we manufactured a fibre link system composed of a custom integrated fiber, with 3D printed microlenses and an ultrafast laser inscribed reformatter.
Abstract Publication: Applied Optics Pub Date: May 2020 DOI: 10.1364/AO.390351 Bibcode: 2020ApOpt..59.4697W full text sources Publisher |
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