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Miniature X-Ray Solar Spectrometer (MinXSS) - A Science-Oriented, University 3U CubeSat

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arxiv 1508.05354 v2 pith:Z233FOBR submitted 2015-08-21 astro-ph.IM astro-ph.SRphysics.geo-phphysics.ins-detphysics.space-ph

classification astro-ph.IMastro-ph.SRphysics.geo-phphysics.ins-detphysics.space-ph
keywords solarminxsscubesatampteklaspmeasurementsminiatureproject
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The Miniature X-ray Solar Spectrometer (MinXSS) is a 3-Unit (3U) CubeSat developed at the Laboratory for Atmospheric and Space Physics (LASP) at the University of Colorado, Boulder (CU). Over 40 students contributed to the project with professional mentorship and technical contributions from professors in the Aerospace Engineering Sciences Department at CU and from LASP scientists and engineers. The scientific objective of MinXSS is to study processes in the dynamic Sun, from quiet-Sun to solar flares, and to further understand how these changes in the Sun influence the Earth's atmosphere by providing unique spectral measurements of solar soft x-rays (SXRs). The enabling technology providing the advanced solar SXR spectral measurements is the Amptek X123, a commercial-off-the-shelf (COTS) silicon drift detector (SDD). The Amptek X123 has a low mass (~324 g after modification), modest power consumption (~2.50 W), and small volume (6.86 cm x 9.91 cm x 2.54 cm), making it ideal for a CubeSat. This paper provides an overview of the MinXSS mission: the science objectives, project history, subsystems, and lessons learned that can be useful for the small-satellite community.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Cross-Calibration of Chandrayaan-2 XSM with INSPIRESat-1 DAXSS and GOES-16 XRS

    astro-ph.SR 2026-08 conditional novelty 6.0 of 10

    Chandrayaan-2 XSM's beryllium window is effectively 25 μm thick, not 8 μm; the corrected calibration brings its spectra and fluxes into ~10-25% agreement with DAXSS and GOES-16.

  2. Searching for Dark Matter with MeVCube

    hep-ph 2025-01 conditional novelty 4.0 of 10

    Using Fisher forecasting, the author shows that a 2U to 12U MeVCube CubeSat could probe new dark matter parameter space for evaporating primordial black holes and MeV-scale decaying or annihilating dark matter.

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