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Hauptverfasser: Taverna, Roberto, Turolla, Roberto, Marra, Lorenzo, Kelly, Ruth M. E., Borghese, Alice, Israel, Gian Luca, Mereghetti, Sandro, Possenti, Andrea, Zane, Silvia, Rigoselli, Michela
Format: Preprint
Veröffentlicht: 2026
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Online-Zugang:https://arxiv.org/abs/2601.15452
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author Taverna, Roberto
Turolla, Roberto
Marra, Lorenzo
Kelly, Ruth M. E.
Borghese, Alice
Israel, Gian Luca
Mereghetti, Sandro
Possenti, Andrea
Zane, Silvia
Rigoselli, Michela
author_facet Taverna, Roberto
Turolla, Roberto
Marra, Lorenzo
Kelly, Ruth M. E.
Borghese, Alice
Israel, Gian Luca
Mereghetti, Sandro
Possenti, Andrea
Zane, Silvia
Rigoselli, Michela
contents Magnetars are now known to be among the most strongly polarized celestial sources in X-rays. Here we report on the $500\,\mathrm{ks}$ observation of the magnetar 1E 1547.0-5408 performed by the Imaging X-ray Polarimetry Explorer (IXPE) in March 2025. The IXPE spectrum is well reproduced by a single thermal component with blackbody temperature $kT_\mathrm{BB}\sim 0.67\,\mathrm{keV}$ and emission radius $R_\mathrm{BB}\sim 1.2\,\mathrm{km}$. The source exhibits a high linear polarization degree in the $2$--$6\,\mathrm{keV}$ band ($\mathrm{PD}=47.7\pm2.9\%$) with polarization angle $\mathrm{PA}=75^\circ.8 \pm 1.^\circ8$, measured West of celestial North. While $\mathrm{PA}$ does not appear to vary with energy, there is some evidence (at the $1σ$ confidence level) of a minimum in $\mathrm{PD}$ between $3$ and $4\,\mathrm{keV}$, compatible with what is expected by partial mode conversion at the vacuum resonance in a magnetized atmosphere. Phase-resolved spectral and polarimetric analyses reveal that X-ray thermal radiation likely originates from a single, fairly small hot spot with a non-uniform temperature distribution. Fitting the phase-dependent $\mathrm{PA}$ measured by IXPE with a rotating vector model (RVM) constrains the source geometry and indicates that both the dipole axis and line-of-sight are misaligned with respect to the spin axis. Under these conditions, the high polarization of the source cannot be regarded as compelling evidence for the presence of vacuum birefringence in the star magnetosphere. Nevertheless, the fact that the RVM successfully reproduces the modulation of the X-ray polarization angle and the behavior of $\mathrm{PD}$ with the energy hint once more to the presence of QED effects in magnetars.
format Preprint
id arxiv_https___arxiv_org_abs_2601_15452
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The long quest for vacuum birefringence in magnetars: 1E 1547.0-5408 and the elusive smoking gun
Taverna, Roberto
Turolla, Roberto
Marra, Lorenzo
Kelly, Ruth M. E.
Borghese, Alice
Israel, Gian Luca
Mereghetti, Sandro
Possenti, Andrea
Zane, Silvia
Rigoselli, Michela
High Energy Astrophysical Phenomena
Magnetars are now known to be among the most strongly polarized celestial sources in X-rays. Here we report on the $500\,\mathrm{ks}$ observation of the magnetar 1E 1547.0-5408 performed by the Imaging X-ray Polarimetry Explorer (IXPE) in March 2025. The IXPE spectrum is well reproduced by a single thermal component with blackbody temperature $kT_\mathrm{BB}\sim 0.67\,\mathrm{keV}$ and emission radius $R_\mathrm{BB}\sim 1.2\,\mathrm{km}$. The source exhibits a high linear polarization degree in the $2$--$6\,\mathrm{keV}$ band ($\mathrm{PD}=47.7\pm2.9\%$) with polarization angle $\mathrm{PA}=75^\circ.8 \pm 1.^\circ8$, measured West of celestial North. While $\mathrm{PA}$ does not appear to vary with energy, there is some evidence (at the $1σ$ confidence level) of a minimum in $\mathrm{PD}$ between $3$ and $4\,\mathrm{keV}$, compatible with what is expected by partial mode conversion at the vacuum resonance in a magnetized atmosphere. Phase-resolved spectral and polarimetric analyses reveal that X-ray thermal radiation likely originates from a single, fairly small hot spot with a non-uniform temperature distribution. Fitting the phase-dependent $\mathrm{PA}$ measured by IXPE with a rotating vector model (RVM) constrains the source geometry and indicates that both the dipole axis and line-of-sight are misaligned with respect to the spin axis. Under these conditions, the high polarization of the source cannot be regarded as compelling evidence for the presence of vacuum birefringence in the star magnetosphere. Nevertheless, the fact that the RVM successfully reproduces the modulation of the X-ray polarization angle and the behavior of $\mathrm{PD}$ with the energy hint once more to the presence of QED effects in magnetars.
title The long quest for vacuum birefringence in magnetars: 1E 1547.0-5408 and the elusive smoking gun
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2601.15452