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Positron astronomy with SPI/INTEGRAL

机译:SPI / INTEGRAL的正电子天文学

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We provide an overview of positron astronomy results that have been obtained using the INTEGRAL spectrometer SPI, and discuss their implications for the still mysterious origin of positrons in our Galaxy. It has long been known that the 511 keV positron annihilation emission is strongest from the central region of our Galaxy. Recently, it has been discovered with the SPI spectrometer that the weaker 511 keV line emission from the inner Galactic disk appears to be asymmetric, with the emission to the west of the Galactic center being about twice as strong than that to the east. This distribution of positron annihilation resembles that of low mass X-ray binaries as observed with the INTEGRAL imager IBIS at hard X-ray energies, suggesting that these systems could provide a significant portion of the positrons in our Galaxy. In addition, the spectrometer SPI has permitted unprecedented spectroscopy of annihilation radiation from the bulge and disk regions of the Galaxy, which commences to yield important insights into the conditions of the medium in which the positrons annihilate.
机译:我们概述了使用INTEGRAL光谱仪SPI获得的正电子天文学结果,并讨论了它们对我们银河系中仍然神秘的正电子起源的影响。早就知道,从我们银河系的中心区域发出的511 keV正电子an灭辐射最强。最近,通过SPI光谱仪发现,来自内部银河盘的较弱的511 keV线发射似乎是不对称的,银河中心向西的发射比向东的发射强大约两倍。正电子an灭的这种分布类似于在硬X射线能量下使用INTEGRAL成像仪IBIS观察到的低质量X射线双星的分布,这表明这些系统可以提供我们银河系中大量的正电子。此外,光谱仪SPI允许对来自银河系凸起和圆盘区域的ni灭辐射进行空前的光谱学分析,这开始产生对正电子an灭的介质条件的重要见解。

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