论文标题

整个星系中的稳态核合成

Steady-state nucleosynthesis throughout the Galaxy

论文作者

Diehl, Roland, Krause, Martin G. H., Kretschmer, Karsten, Lang, Michael, Pleintinger, Moritz M. M., Siegert, Thomas, Wang, Wei, Bouchet, Laurent, Martin, Pierrick

论文摘要

来自核合成的特征性伽马射线线的测量和天体物理解释是整体任务的重要科学目标之一,尤其是其光谱仪SPI。来自26AL和60FE衰减线的发射起源于核合成源的累积喷射,并且在本质上似乎是扩散的。据信,有26AL和60FE主要来自巨大的星团。伽马射线观察为追踪核合成射出的命运和流动的命运和流动而打开了一个有趣的窗口,在它们离开了直接的来源及其出生位点,并在与环境星际气体混合的道路上。积分26的发射图像证实了较早的块状发现和沿着星系的整个平面的一定程度,从而支持其来自大型明星组的起源。积分光谱法解决了这条线,发现多普勒的宽度和从大型银河旋转的系统变化。但是,超过〜200 km/s的过剩速度表明,在螺旋臂之间向前方向延伸的大型超级泡沫中,有26AL衰减优先。从附近的Orion和Eridanus Superbleble中检测26条线排放支持了这一解释。已经发现来自β+衰减的正电子差异为26AL和其他核合成驱虫,不能解释511 KeV的正电子歼灭伽马射线的形态,这些形态已通过积分进行了分辨。通过积分测量的60FE信号是扩散的,但对于成像解释而言太弱,排除了点状/浓缩源的来源。 60FE/26AL比率约束至0.2-0.4范围。除了提高这些结果的精度外,从Novae(通过22NA放射性)和我们银河系中过去的中子星合并(来自R-Process放射性)的弥漫性核合成贡献是剩余的任务扩展的令人兴奋的新前景。

Measurement and astrophysical interpretation of characteristic gamma-ray lines from nucleosynthesis was one of the prominent science goals of the INTEGRAL mission and in particular its spectrometer SPI. Emission from 26Al and from 60Fe decay lines originates from accumulated ejecta of nucleosynthesis sources, and appears diffuse in nature. 26Al and 60Fe are believed to originate mostly from massive star clusters. Gamma-ray observations open an interesting window to trace the fate and flow of nucleosynthesis ejecta, after they have left the immediate sources and their birth sites, and on their path to mix with ambient interstellar gas. The INTEGRAL 26Al emission image confirms earlier findings of clumpiness and an extent along the entire plane of the Galaxy, supporting its origin from massive-star groups. INTEGRAL spectroscopy resolved the line and found Doppler broadenings and systematic shifts from large-scale galactic rotation. But an excess velocity of ~200 km/s suggests that 26Al decays preferentially within large superbubbles that extend in forward directions between spiral arms. The detection of 26Al line emission from nearby Orion and the Eridanus superbubble supports this interpretation. Positrons from beta+ decays of 26Al and other nucleosynthesis ejecta have been found to not explain the morphology of positron annihilation gamma-rays at 511 keV that have been measured by INTEGRAL. The 60Fe signal measured by INTEGRAL is diffuse but too weak for an imaging interpretation, an origin from point-like/concentrated sources is excluded. The 60Fe/26Al ratio is constrained to a range 0.2-0.4. Beyond improving precision of these results, diffuse nucleosynthesis contributions from novae (through 22Na radioactivity) and from past neutron star mergers in our Galaxy (from r-process radioactivity) are exciting new prospects for the remaining mission extensions.

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