Analysis of Spectral Calibration Correction Based on Mie Scattering
ID:82 View Protection:ATTENDEE Updated Time:2024-10-23 10:37:26 Hits:611 Oral Presentation

Start Time:2024-11-02 11:50(Asia/Shanghai)

Duration:20min

Session:P5 Parallel Session 5 » P5-2Parallel Session 5(November 2 AM)

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Abstract
Oblique light incidence on a diffuse transmission plate significantly impacts the results in the spectral calibration process. Analysis of the spectrometer's diffraction grating reveals that oblique angles cause uneven energy distribution at the entrance pupil, leading to spectral shifts. This study uses Mie scattering theory to model the diffuse transmission plate and explains the spectral shift, particularly in the infrared region where the plate's micron-scale particles have a pronounced effect. For a 1064nm laser incident at 45° on a 50-micron particle plate, the calculated spectral shifts at 45°, 55°, and 65° are 0.077nm, 0.108nm, and 0.139nm, respectively. Experimental Gaussian-fitted results show actual shifts of 0.044nm, 0.052nm, and 0.085nm. The paper concludes with an analysis of the differences between experimental and theoretical results.
Keywords
Spectral calibration, Mie scattering, Grating system
Speaker
YuQi
Student University of Chinese Academy of Sciences

Submission Author
YuQi University of Chinese Academy of Sciences
HuangYu Chinese Academy of Sciences;Changchun Institute of Optics; Fine Mechanics and Physics
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Important Date
  • Conference Date

    Oct 31

    2024

    to

    Nov 03

    2024

  • Sep 30 2024

    Draft paper submission deadline

  • Nov 12 2024

    Registration deadline

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