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首页> 外文期刊>The Astrophysical Journal. Letters >POLARIZED REFLECTED LIGHT FROM THE EXOPLANET HD189733b: FIRST MULTICOLOR OBSERVATIONS AND CONFIRMATION OF DETECTION
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POLARIZED REFLECTED LIGHT FROM THE EXOPLANET HD189733b: FIRST MULTICOLOR OBSERVATIONS AND CONFIRMATION OF DETECTION

机译:来自Exoplanet HD189733B的偏振反射光:首先是多色观察和检测确认

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摘要

We report the first multicolor polarimetric measurements (U B V bands) for the hot Jupiter HD189733b and confirm our previously reported detection of polarization in the B band. The wavelength dependence of polarization indicates the dominance of Rayleigh scattering with a peak in the blue B and U bands of ~10~(-4) ± 10~(-5) and at least a factor of two lower signal in the V band. The Rayleigh-like wavelength dependence, also detected in the transmitted light during transits, implies a rapid decrease of the polarization signal toward longer wavelengths. Therefore, the nondetection by Wiktorowicz, based on a measurement integrated within a broad passband covering the V band and partly covering the B and R bands, is inconclusive and consistent with our detection in B. We discuss possible sources of the polarization and demonstrate that effects of incomplete cancellation of stellar limb polarization due to starspots or tidal perturbations are negligible as compared with scattering polarization in the planetary atmosphere. We compare the observations with a Rayleigh-Lambert model and determine effective radii and geometrical albedos for different wavelengths. We find a close similarity of the wavelength-dependent geometrical albedo with that of the Neptune atmosphere, which is known to be strongly influenced by Rayleigh and Raman scattering. Our result establishes polarimetry as a reliable means for directly studying exoplanetary atmospheres.
机译:我们报告了Hot Jupiter HD189733B的第一个多色偏振测量(U B V频带),并确认了先前报告的B频带中的极化检测。偏振的波长依赖性指示瑞利散射的优势与蓝色B和〜10〜(-4)±10〜(-5)的U带中的峰值和v频带中的两个下部信号的至少一个因子。在经输期间,在透射光中也检测到的瑞利状波长依赖性意味着偏振信号朝向较长波长的快速降低。因此,基于在覆盖V频带的广播带内集成的宽通带内集成的测量的基于覆盖V频段的测量,与我们在B中的检测不确定并符合我们的检测。我们讨论了可能的极化来源并证明了这种效果的源于不确定的并且一致。由于星形气氛中的散射极化相比,由于星空或潮汐扰动而不完全取消恒星肢体极化的偏振差异可忽略不计。我们将观察与Rayleigh-Lambert模型进行比较,并确定用于不同波长的有效的半径和几何反玻璃。我们发现波长依赖性几何反照杯的相似性与海王星气氛中的波长,已知受瑞利和拉曼散射的强烈影响。我们的结果建立了Polarimetry作为直接学习外部内容大气的可靠手段。

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