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Models of very-high-energy gamma-ray emission from the jets of microquasars: Orbital modulation

机译:来自微类星体喷射的超高能伽马射线发射模型:轨道调制

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The recent detection of very-high-energy (GeV-TeV) gamma-ray emission from the Galactic black-hole candidate and microquasar LS 5039 has sparked renewed interest in jet models for the high-energy emission in those objects. In this work, we have focused on models in which the high-energy emission results from synchrotron and Compton emission by relativistic electrons in the jet (leptonic jet models). Particular attention has been paid to a possible orbital modulation of the high-energy emission due to azimuthal asymmetries caused by the presence of the companion star. Both orbital-phase dependent gamma gamma absorption and Compton scattering of optical/UV photons from the companion star may lead to an orbital modulation of the gamma-ray emission. We make specific predictions which should be testable with refined data from HESS and the upcoming GLAST mission.
机译:最近从银河系黑洞候​​选物和微类星体LS 5039探测到的超高能(GeV-TeV)伽马射线发射,激发了人们对这些物体中高能发射的喷气模型的新兴趣。在这项工作中,我们集中在模型中,其中高能发射是由射流中的相对论电子通过同步加速器和康普顿发射产生的(轻子射流模型)。由于伴随恒星的存在引起的方位角不对称,特别关注了高能发射的可能轨道调制。轨道相位相关的伽玛伽玛吸收和来自伴星的光学/紫外线光子的康普顿散射都可能导致伽玛射线发射的轨道调制。我们做出具体的预测,这些预测应该可以用来自HESS和即将到来的GLAST任务的精确数据进行检验。

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