...
首页> 外文期刊>The Astrophysical Journal. Letters >Dusty Outflows in Planetary Atmospheres: Understanding “Super-puffs” and Transmission Spectra of Sub-Neptunes
【24h】

Dusty Outflows in Planetary Atmospheres: Understanding “Super-puffs” and Transmission Spectra of Sub-Neptunes

机译:尘土飞扬的流出行星氛围:了解亚Neptunes的“超级斗篷”和传输光谱

获取原文
获取原文并翻译 | 示例
           

摘要

“Super-puffs” are planets with anomalously low mean densities (?10~(-1) g cm~(-3)). With a low surface gravity, the extended atmosphere is susceptible to extreme hydrodynamic mass loss (“boil-off”) on a timescale that is much shorter than the system's age. Even more puzzling, super-puffs are estimated to have a scale height of ~3000 km, yet recent observations revealed completely flat transmission spectra for Kepler 51b and 51d. We investigate a new scenario that explains both observations: non-static outflowing (M? 10~(-10) M_⊕yr~(-1) ) atmospheres that carry very small dust grains (~10 ? in size, ~10~(-2) in mass fraction) to high altitudes (?10~(-6) bar). Dust at high altitudes inflates the observed transit radius of the planet while flattening the transmission spectra. Previous static atmospheric models struggle to achieve cloud elevation and production of photochemical haze at such high altitudes. We propose to test this scenario by extending the wavelength coverage of transmission spectra. If true, dusty atmospheric outflows may affect many young (?10~9 yr), low-mass (?10 M_⊕) exoplanets, thereby limiting our ability to study the atmospheric composition in transmission, and inflate the observed transit radius of a planet, hence obscuring the underlying mass-radius relationship.
机译:“超级噗噗”是具有异常低平均密度的行星(?10〜(-1(-1)g cm〜(-3))。表面重力低,延长的气氛易受极端流体动力学质量损失(“沸腾”)的时间尺度远短于系统年龄短。据估计,更令人费解的超级粉扑率为3000公里,但最近的观察结果显示了开夹51B和51D的完全平坦的传输光谱。我们调查了一种新的情景,解释了观察的观察:非静态过量(m?10〜(-10)m_⊕⊕〜(-1))大气压,携带非常小的粉尘颗粒(〜10?尺寸〜10〜( -2)质量分数)到高海拔(?10〜(-6)条)。高海拔地区的灰尘在平整传输光谱时膨胀了行星的观察到的过境半径。以前的静态大气模型在这种高海拔地区实现了云高度和生产的光化学雾度。我们建议通过扩展传输光谱的波长覆盖来测试这种情况。如果是真实的,尘土飞扬的大气外流可能会影响许多年轻(?10〜9年),低质量(?10m_ν)外鼻球,从而限制了我们在传输中研究大气组成的能力,并充气了行星的观察到的过境半径因此掩盖了潜在的大众化关系关系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号