IXPE Polarizations of the Lighthouse Pulsar, Trail, and Filament

Fuente: arXiv
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Main Authors: Dinsmore, Jack T., Romani, Roger W., Zhang, S., Ng, C. -Y., Silvestri, Stefano, Kargaltsev, Oleg, Bucciantini, Niccolo', Kaaret, Philip, Wong, Josephine, Slane, Patrick, Soffitta, Paolo, Weisskopf, Martin C.
Format: Preprint
Published: 2026
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author Dinsmore, Jack T.
Romani, Roger W.
Zhang, S.
Ng, C. -Y.
Silvestri, Stefano
Kargaltsev, Oleg
Bucciantini, Niccolo'
Kaaret, Philip
Wong, Josephine
Slane, Patrick
Soffitta, Paolo
Weisskopf, Martin C.
author_facet Dinsmore, Jack T.
Romani, Roger W.
Zhang, S.
Ng, C. -Y.
Silvestri, Stefano
Kargaltsev, Oleg
Bucciantini, Niccolo'
Kaaret, Philip
Wong, Josephine
Slane, Patrick
Soffitta, Paolo
Weisskopf, Martin C.
contents The Lighthouse pulsar (PSR J1101$-$6101) sports a bright X-ray trail and filament. The synchrotron emission from both structures is expected to be polarized, with electric vector position angle (EVPA) perpendicular to the magnetic field direction and polarization degree (PD) indicating the local degree of magnetic turbulence. We present a 1 megasecond Imaging X-ray Polarimetry Explorer (IXPE) observation of the Lighthouse complex. At the 99% confidence level, we detect the filament polarization with PD $55 \pm 18\%$ and EVPA indicating a magnetic field parallel to the filament axis. The large PD implies a turbulent magnetic field weaker than the background field, in conflict with some existing models. We also detect polarization from the pulsar and trail. The trail's X-ray polarization is nearly orthogonal to the radio polarization, suggesting spatial separation between the X-ray- and radio-emitting leptons. The pulsar polarization is well-fit by the rotating vector model.
format Preprint
id arxiv_https___arxiv_org_abs_2604_22914
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle IXPE Polarizations of the Lighthouse Pulsar, Trail, and Filament
Dinsmore, Jack T.
Romani, Roger W.
Zhang, S.
Ng, C. -Y.
Silvestri, Stefano
Kargaltsev, Oleg
Bucciantini, Niccolo'
Kaaret, Philip
Wong, Josephine
Slane, Patrick
Soffitta, Paolo
Weisskopf, Martin C.
High Energy Astrophysical Phenomena
The Lighthouse pulsar (PSR J1101$-$6101) sports a bright X-ray trail and filament. The synchrotron emission from both structures is expected to be polarized, with electric vector position angle (EVPA) perpendicular to the magnetic field direction and polarization degree (PD) indicating the local degree of magnetic turbulence. We present a 1 megasecond Imaging X-ray Polarimetry Explorer (IXPE) observation of the Lighthouse complex. At the 99% confidence level, we detect the filament polarization with PD $55 \pm 18\%$ and EVPA indicating a magnetic field parallel to the filament axis. The large PD implies a turbulent magnetic field weaker than the background field, in conflict with some existing models. We also detect polarization from the pulsar and trail. The trail's X-ray polarization is nearly orthogonal to the radio polarization, suggesting spatial separation between the X-ray- and radio-emitting leptons. The pulsar polarization is well-fit by the rotating vector model.
title IXPE Polarizations of the Lighthouse Pulsar, Trail, and Filament
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2604.22914