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Radaslow Marcinkowski

Publications and source records attributed to Radaslow Marcinkowski.

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A fully autonomous data center for the space-borne hard X-ray Compton polarimeter POLAR developed at PSI

POLAR is a space-borne hard X-ray Compton polarimeter built by a collaboration of institutes from Switzerland, China and Poland. Precise detection of the polarization can be a powerful tool to unveil emission mechanisms of e.g. Gamma-Ray Bursts (GRB) or Solar Flares (SF). POLAR is equipped with an array of 1600 scintillator bars dimensioned for precise measurements of the polarization of hard X-rays in the energy range from 50 keV to 500 keV. The instrument was launched into space on September 15th, 2016 on-board the Chinese Space Laboratory TG-2 for up to 3 years long observation period. Telemetry data from its operation in space may reach up tp 50 GB daily. To store and process such a huge amount of data both dedicated hardware and specialized software are required. Moreover, constant data inflow also requires a fully automated and safeguarded data processing. For this purpose, a dedicated data centre was established at PSI. We present its design concept and structure as well as demonstrate main features with respect to data processing, quick look utilities and alerting functions.

astro-ph.IM

Optimization of the final settings for the Space-borne Hard X-ray Compton Polarimeter POLAR

POLAR is a compact wide field space-borne detector dedicated for precise measurements of the linear polarization of hard X-rays emitted by transient sources in the energy range from 50 keV to 500 keV. It consists of 1600 plastic scintillator bars grouped in 25 detector modules that are used as gamma-ray detection material. Its energy range sensitivity is optimized for detection of the prompt emission photons from the gamma-ray bursts. Measurements of the GRB polarization provide unique information on emission mechanisms as well as on composition and structure of the GRB jets. The POLAR instrument was developed by international collaboration of Switzerland, China and Poland. It was launched in space on-board the China Space Laboratory TG-2 on September 15th, 2016. Based on the ground calibration data, several high voltage and threshold settings were calculated and verified in order to obtain various energy ranges and optimized signal to background conditions for different measurement purposes. In this paper we present optimization procedure details and current test results.

physics.ins-det