A Calibration System for Compton Polarimetry at $e^+e^-$ Linear Colliders
Polarimetry with permille-level precision is essential for future electron-positron linear colliders. Compton polarimeters can reach negligible statistical uncertainties within seconds of measurement time. The dominating systematic uncertainties originate from the response and alignment of the detec...
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Zusammenfassung: | Polarimetry with permille-level precision is essential for future
electron-positron linear colliders. Compton polarimeters can reach negligible
statistical uncertainties within seconds of measurement time. The dominating
systematic uncertainties originate from the response and alignment of the
detector which records the Compton scattered electrons. The robust baseline
technology for the Compton polarimeters foreseen at future linear colliders is
based on an array of gas Cherenkov detectors read out by photomultipliers. In
this paper, we will present a calibration method which promises to monitor
nonlinearities in the response of such a detector at the level of a few
permille. This method has been implemented in an LED-based calibration system
which matches the existing prototype detector. The performance of this
calibration system is sufficient to control the corresponding contribution to
the total uncertainty on the extracted polarisation to better than $0.1\%$. |
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DOI: | 10.48550/arxiv.1509.03178 |