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MICROSCOPE mission: Statistics and impact of glitches on the test of the weak equivalence principle

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arxiv 2012.06485 v2 pith:U33QNBDJ submitted 2020-12-11 gr-qc astro-ph.IMphysics.space-ph

MICROSCOPE mission: Statistics and impact of glitches on the test of the weak equivalence principle

classification gr-qc astro-ph.IMphysics.space-ph
keywords testglitchesdatadistributionequivalenceimpactmassesmicroscope
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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MICROSCOPE's space test of the weak equivalence principle (WEP) is based on the minute measurement of the difference of accelerations experienced by two test masses as they orbit the Earth. A detection of a violation of the WEP would appear at a well-known frequency $f_{\rm EP}$ depending on the satellite's orbital and spinning frequencies. Consequently, the experiment was optimised to miminise systematic errors at $f_{\rm EP}$. Glitches are short-lived events visible in the test masses' measured acceleration, most likely originating in cracks of the satellite's coating. In this paper, we characterise their shape and time distribution. Although intrinsically random, their time of arrival distribution is modulated by the orbital and spinning periods. They have an impact on the WEP test that must be quantified. However, the data available prevents us from unequivocally tackling this task. We show that glitches affect the test of the WEP, up to an a priori unknown level. Discarding the perturbed data is thus the best way to reduce their effect.

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