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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Gravitational lensing by a magnetized compact object in the presence of plasma
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Gravitational lensing by a magnetized compact object in the presence of plasma

机译:通过磁化紧凑型物体在等离子体存在下进行引力透镜

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In the weak field approximation, we study the gravitational lensing by spherical symmetric compact object immersed in magnetic field in the presence of magnetized plasma. The external magnetic field causes the split of the deflection angle of the photon, Einstein ring and Einstein cross as the counterpart of the Zeeman effect. In particular, the magnetic field affects the magnification of images, creating additional components. We also study the time delay of an electromagnetic signal due to the geometry and the gravitational field around the lensing source. We show that the time delay of the electromagnetic signal strongly depends on the plasma parameters, and it slightly decreases in the plasma in comparison with that in vacuum.
机译:在弱场近似中,我们研究了在磁化等离子体存在下浸入磁场中的球面对称致块物体的重力透镜。 外部磁场导致光子,爱因斯坦环和爱因斯坦交叉的偏转角的分裂作为塞曼效应的对应物。 特别地,磁场影响图像的放大率,创建附加组件。 我们还研究了由于几何形状和镜头源周围的重力场的电磁信号的时间延迟。 我们表明电磁信号的时间延迟强烈取决于等离子体参数,与真空中的血浆相比,血浆略微降低。

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