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Nonthermal Emission from the Interaction of Magnetized Exoplanets with the Wind of Their Host Star

机译:从磁化外产的相互作用随着宿主恒星的风的非热排放

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We study the nonthermal emission from the interaction between magnetized Jupiter-like exoplanets and the wind from their host star. The supersonic motion of planets through the wind forms a bow shock that accelerates electrons that produce nonthermal radiation across a broad wavelength range. We discuss three wind mass-loss rates: M_w~ 10~(-14), 10~(-9), 10~(-6) M_⊙ yr~(-1) corresponding to solar-type, T Tauri, and massive O/B-type stars, respectively. We find that the expected radio synchrotron emission from a Jupiter-like planet is detectable by the Jansky Very Large Array and the Square Kilometre Array at~1-10 GHz out to a distance of ~100 pc, whereas the infrared emission is detectable by the James Webb Space Telescope out to a similar distance. Inverse Compton scattering of the stellar radiation results in X-ray emission detectable by Chandra X-ray Observatory out to ~150 pc. Finally, we apply our model to the upper limit constraints on V380 Tau, the first star-hot Jupiter system observed in radio wavelength. Our bow-shock model provides constraints on the magnetic field, the interplanetary medium, and the nonthermal emission efficiency in V380 Tau.
机译:我们研究了从磁化木星般的外部的相互作用与宿主恒星之间的互动的非热排放。行星通过风的超声波运动形成凸轮冲击,其加速在宽波长范围内产生非热辐射的电子。我们讨论三种风量损失:M_W〜10〜(-14),10〜(-9),10〜( - 6)m_⊙yr〜(-1)对应太阳能,t tauri和massive o / b型星。我们发现,Jansky非常大的阵列和平方公里阵列的预期无线电同步发射来自JUNITELS的行星上可检测到〜1-10GHz OUT到距离〜100p的距离,而红外排放是可检测的James Webb Space Telescope出现了类似的距离。恒星辐射的逆康顿散射导致X射线排放可检测的Chandra X射线天文台,达到约150pc。最后,我们将我们的模型应用于V380 Tau上限的上限约束,在射频波长中观察到的第一星热Jupiter系统。我们的弓度冲击模型为V380 Tau的磁场,行星介质和非热发射效率提供了限制。

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