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Near-Earth space balloon-based multi-band airglow imager optic design.

Zhanchao Wang, Min Huang, Yan Sun

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    A new balloon-based multi-band airglow imager successfully captured atmospheric phenomena from near space. This instrument provides high-resolution data for studying near-Earth space and ionospheric interactions.

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    Area of Science:

    • Atmospheric physics
    • Near-Earth space science
    • Optical instrumentation

    Background:

    • Airglow serves as a crucial tracer for atmospheric interactions.
    • High-altitude balloons offer extended flight capabilities for enhanced atmospheric observation.
    • Near-space exploration requires robust instrumentation for harsh environmental conditions.

    Purpose of the Study:

    • To design and test a balloon-based multi-band airglow imager.
    • To achieve high spatial and temporal resolution airglow measurements.
    • To validate the imager's performance in the near-space environment.

    Main Methods:

    • Development of a multi-band airglow imager observing specific wavelengths (OI, Na, OH).
    • Utilizing an annular field of view for comprehensive observation.
    • Integrating the imager into a high-altitude balloon payload for extended flight above 30 km.

    Main Results:

    • The imager successfully operated in near space, capturing airglow images.
    • The optical system demonstrated resilience in the harsh near-space environment.
    • Achieved a resolution of 500 m at an altitude of 250 km.

    Conclusions:

    • The designed multi-band airglow imager is functional and suitable for near-space applications.
    • The instrument provides valuable data for studying atmospheric interactions.
    • Future missions will leverage this imager for further near-space exploration.