Submillimeter Polarimetry with PolKa, a reflection-type modulator for the APEX telescope
Helmut Wiesemeyer (MPIFR), Talayeh Hezareh (MPIFR), Ernst Kreysa, (MPIFR), Axel Weiss (MPIFR), Rolf G\"usten (MPIFR), Karl M. Menten (MPIFR),, Giorgio Siringo (ESO), Frederic Schuller (ESO), Attila Kovacs

TL;DR
This paper introduces PolKa, a reflection-type waveplate polarimeter for the LABOCA instrument at APEX, enabling detailed submillimeter polarization imaging of cosmic magnetic fields with high efficiency and accuracy.
Contribution
The paper presents the design, commissioning, and data analysis methods of PolKa, a novel polarimeter with high modulation efficiency for submillimeter observations.
Findings
Instrumental polarization is around 0.1% for point sources.
PolKa's measurements of the Crab nebula match radio and optical data.
High sensitivity allows mapping of polarized emission in Orion Bar.
Abstract
Imaging polarimetry is an important tool for the study of cosmic magnetic fields. In our Galaxy, polarization levels of a few up to 10\% are measured in the submillimeter dust emission from molecular clouds and in the synchrotron emission from supernova remnants. Only few techniques exist to image the distribution of polarization angles, as a means of tracing the plane-of-sky projection of the magnetic field orientation. At submillimeter wavelengths, polarization is either measured as the differential total power of polarization-sensitive bolometer elements, or by modulating the polarization of the signal. Bolometer arrays such as LABOCA at the APEX telescope are used to observe the continuum emission from fields as large as in diameter. %Here we present the results from the commissioning of PolKa, a polarimeter for Here we present PolKa, a polarimeter for LABOCA with…
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