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GAMMA-RAY EMISSION FROM MASSIVE STAR FORMING REGIONS

机译:恒星形成区的伽玛射线发射

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摘要

Recent radio observations support a picture for star formation where there is accretion of matter onto a central protostar with the ejection of molecular outflows that can affect the surrounding medium. The impact of a supersonic outflow on the ambient gas can produce a strong shock that could accelerate particles up to relativistic energies. Strong evidence for this has been the detection of nonthermal radio emission coming from the jet termination region of some young massive stars. In the present contribution, we study the possible high-energy emission due to the interaction of relativistic particles, electrons and protons, with the magnetic, photon and matter fields inside a giant molecular cloud. Electrons lose energy via relativistic Bremsstrahlung, synchrotron radiation and inverse Compton interactions, and protons cool mainly through inelastic collisions with atoms in the cloud. We conclude that some massive young stellar objects (YSOs) might be detectable at gamma-rays by next generation instruments, both satellite-borne and ground based.
机译:最近的射电观测结果支持形成恒星的图片,在该图片中,有物质积聚到中央原恒星上,并喷射出可能影响周围介质的分子流出。超声流对环境气体的冲击会产生强烈的冲击,从而可能使粒子加速到相对论能量。对此的有力证据是检测到了来自一些年轻大质量恒星的喷气终端区域的非热辐射。在当前的贡献中,我们研究了由于相对论粒子,电子和质子与巨大分子云内部的磁场,光子和物质场相互作用而可能产生的高能发射。电子通过相对论的ms致辐射,同步加速器辐射和康普顿逆相互作用而失去能量,质子主要通过与云中原子的非弹性碰撞而冷却。我们得出的结论是,下一代的星载和地面仪器可能会在伽马射线中检测到一些巨大的年轻恒星物体(YSO)。

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