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Multimodal Optical Imaging Platform for Studying Cellular Metabolism
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Millimeter-submillimeter wavelength filter system.

L A Page, E S Cheng, B Golubovic

    Applied Optics
    |September 24, 2010
    PubMed
    Summary
    This summary is machine-generated.

    This study details cryogenic millimeter-submillimeter wavelength filters for balloonborne radiometers. The filters, featuring resonant mesh grids and cross-shaped holes, achieve specific passbands with limited high-frequency leakage.

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    Area of Science:

    • Astrophysics
    • Instrumentation
    • Optical Engineering

    Background:

    • Balloonborne bolometric radiometers require precise filtering for millimeter-submillimeter wavelengths.
    • Accurate characterization of filter performance is crucial for scientific data integrity.

    Purpose of the Study:

    • To design, fabricate, and test a set of cryogenic filters for a balloonborne bolometric radiometer.
    • To characterize filter performance, including passbands and high-frequency leakage.

    Main Methods:

    • Fabrication of resonant mesh grids with cross-shaped holes in aluminum on Mylar.
    • Measurement of filter transmittance and reflectance for various incident angles.
    • Analysis of laboratory and flight data to determine filter response and limitations.

    Main Results:

    • Development of a filter set with passbands at 1.73, 1.05, 0.61, and 0.44 mm.
    • Establishment of an empirical scaling law for resonant wavelength based on structure parameters.
    • Quantification of high-frequency leakage limits through laboratory and flight data analysis.

    Conclusions:

    • The developed cryogenic filter set meets the requirements for millimeter-submillimeter observations.
    • The cross-shaped hole resonant array is an effective component for precise wavelength filtering.
    • The characterization methods provide a framework for evaluating similar optical systems.