NASAのIXPEイメージャーが珍しいパルサーの謎を解明(NASA’s IXPE Imager Reveals Mysteries of Rare Pulsar)

2025-07-15 NASA

NASAとイタリア宇宙機関の共同ミッションIXPEが、ミリ秒パルサーPSR J1023+0038のX線偏光を初めて詳細観測し、従来説を覆す成果を発表。これまでX線は降着円盤由来と考えられていたが、偏光の一致から主因はパルサー風と判明。光学・X線偏光の同期性や放射構造の解析を通じ、高エネルギー粒子の加速機構や星間相互作用の理解に貢献。今後のパルサー研究の基盤となる重要な発見とされる。

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遷移型ミリ秒パルサーの風-降着円盤相互作用による偏光多波長放射 Polarized Multiwavelength Emission from Pulsar Wind—Accretion Disk Interaction in a Transitional Millisecond Pulsar

Maria Cristina Baglio, Francesco Coti Zelati, Alessandro Di Marco, Fabio La Monaca, Alessandro Papitto, Andrew K. Hughes, Sergio Campana, David M. Russell, Diego F. Torres, Francesco Carotenuto,…
The Astrophysical Journal Letters  Published: 2025 July 1
DOI:10.3847/2041-8213/add7d2

NASAのIXPEイメージャーが珍しいパルサーの謎を解明(NASA’s IXPE Imager Reveals Mysteries of Rare Pulsar)

Abstract

Transitional millisecond pulsars (tMSPs) bridge the evolutionary gap between accreting neutron stars in low-mass X-ray binaries and millisecond radio pulsars. These systems exhibit a unique subluminous X-ray state characterized by the presence of an accretion disk and rapid switches between high and low X-ray emission modes. The high mode features coherent millisecond pulsations spanning from the X-ray to the optical band. We present multiwavelength polarimetric observations of the tMSP PSR J1023+0038 aimed at conclusively identifying the physical mechanism powering its emission in the subluminous X-ray state. During the high mode, we report a probable detection of polarized emission in the 2–6 keV energy range, with a polarization degree of (12 ± 3)% and a polarization angle of −2 ± 9measured counterclockwise from the north celestial pole toward the east (99.7% confidence level, c.l.; uncertainties are quoted at 1σ). At optical wavelengths, we find a polarization degree of (1.41 ± 0.04)% and a polarization angle aligned with that in the X-rays, suggesting a common physical mechanism operating across these bands. Remarkably, the polarized flux spectrum matches the pulsed emission spectrum from optical to X-rays. The polarization properties differ markedly from those observed in other accreting neutron stars and isolated rotation-powered pulsars and are also inconsistent with an origin in a compact jet. Our results provide direct evidence that the polarized and pulsed emissions both originate from synchrotron radiation at the boundary region formed where the pulsar wind interacts with the inner regions of the accretion disk.

1701物理及び化学
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