Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and characterize. The new generation of low-frequency radio telescopes, such as the Low Frequency Array (LOFAR: a Square Kilometre Array-low pathfinder), provides advancements in our capability of probing Galactic magnetism through low-frequency polarimetry. Maps of diffuse polarized radio emission and the associated Faraday rotation can be used to infer properties of, and trace structure in, the magnetic fields in the ISM. However, to date very little of the sky has been probed at high angular and Faraday depth resolution. We observed a 5° by 5° region centred on the nearby galaxy IC 342 (ℓ = 138.2°,b = + 10.6°) using the LOFAR high-band antennae in the freq...
Sharpless 2–27 (Sh2–27) is a nearby H ɪɪ region excited by ζOph. We present observations of polarize...
Observations of synchrotron emission at low radio frequencies reveal a labyrinth of polarised Galact...
Aims. This study aims to characterize linear polarization structures in LOFAR observations of the in...
Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and characterize....
Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and characterize....
Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and characterize....
© 2017 ESO. Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and ...
This study aims to characterize linear polarization structures in LOFAR observations of the interste...
Faraday tomography allows us to map diffuse polarized synchrotron emission from our Galaxy and use i...
Aims. This study aims to characterize linear polarization structures in LOFAR observations of the in...
Sharpless 2-27 (Sh2-27) is a nearby H II region excited by ζOph. We present observations of polarize...
Faraday tomography of radio polarimetric data below 200 MHz from the LOw Frequency ARray (LOFAR) has...
Context. Observations of synchrotron emission at low radio frequencies reveal a labyrinth of polaris...
Sharpless 2–27 (Sh2–27) is a nearby H ɪɪ region excited by ζOph. We present observations of polarize...
Observations of synchrotron emission at low radio frequencies reveal a labyrinth of polarised Galact...
Aims. This study aims to characterize linear polarization structures in LOFAR observations of the in...
Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and characterize....
Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and characterize....
Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and characterize....
© 2017 ESO. Magnetic fields pervade the interstellar medium (ISM), but are difficult to detect and ...
This study aims to characterize linear polarization structures in LOFAR observations of the interste...
Faraday tomography allows us to map diffuse polarized synchrotron emission from our Galaxy and use i...
Aims. This study aims to characterize linear polarization structures in LOFAR observations of the in...
Sharpless 2-27 (Sh2-27) is a nearby H II region excited by ζOph. We present observations of polarize...
Faraday tomography of radio polarimetric data below 200 MHz from the LOw Frequency ARray (LOFAR) has...
Context. Observations of synchrotron emission at low radio frequencies reveal a labyrinth of polaris...
Sharpless 2–27 (Sh2–27) is a nearby H ɪɪ region excited by ζOph. We present observations of polarize...
Observations of synchrotron emission at low radio frequencies reveal a labyrinth of polarised Galact...
Aims. This study aims to characterize linear polarization structures in LOFAR observations of the in...