...
首页> 外文期刊>The Astrophysical journal >EARTH, MOON, SUN, AND CV ACCRETION DISKS
【24h】

EARTH, MOON, SUN, AND CV ACCRETION DISKS

机译:地球,月亮,太阳和简历增生盘

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Net tidal torque by the secondary on a misaligned accretion disk, like the net tidal torque by the Moon and the Sun on the equatorial bulge of the spinning and tilted Earth, is suggested by others to be a source to retrograde precession in non-magnetic, accreting cataclysmic variable (CV) dwarf novae (DN) systems that show negative superhumps in their light curves. We investigate this idea in this work. We generate a generic theoretical expression for retrograde precession in spinning disks that are misaligned with the orbital plane. Our generic theoretical expression matches that which describes the retrograde precession of Earths' equinoxes. By making appropriate assumptions, we reduce our generic theoretical expression to those generated by others, or to those used by others, to describe retrograde precession in protostellar, protoplanetary, X-ray binary, non-magnetic CV DN, quasar, and black hole systems. We find that spinning, tilted CV DN systems cannot be described by a precessing ring or by a precessing rigid disk. We find that differential rotation and effects on the disk by the accretion stream must be addressed. Our analysis indicates that the best description of a retrogradely precessing spinning, tilted, CV DN accretion disk is a differentially rotating, tilted disk with an attached rotating, tilted ring located near the innermost disk annuli. In agreement with the observations and numerical simulations by others, we find that our numerically simulated CV DN accretion disks retrogradely precess as a unit. Our final, reduced expression for retrograde precession agrees well with our numerical simulation results and with selective observational systems that seem to have main-sequence secondaries. Our results suggest that a major source to retrograde precession is tidal torques like that by the Moon and the Sun on the Earth. In addition, these tidal torques should be common to a variety of systems where one member is spinning and tilted, regardless if accretion disks are present or not. Our results suggest that the accretion disk's geometric shape directly affects the disk's precession rate.
机译:其他人认为,次级在未对准的吸积盘上产生的净潮汐转矩,例如在旋转和倾斜的地球的赤道隆起处的月亮和太阳所产生的净潮汐转矩,是使非磁场逆行进的源头,分泌的大地变迁(CV)矮新星(DN)系统在其光曲线中显示出负超峰。我们在这项工作中研究了这个想法。我们为与轨道平面未对准的旋转盘中的逆行进生成了一个通用的理论表达式。我们的通用理论表达式与描述地球春分点逆行进的表达式相匹配。通过做出适当的假设,我们将我们的通用理论表达式简化为他人产生的或他人使用的,以描述原恒星,原行星,X射线二进制,非磁性CV DN,类星体和黑洞系统中的逆行进。我们发现旋转的,倾斜的CV DN系统无法通过进动环或进动刚性盘来描述。我们发现必须解决增生流对磁盘的不同旋转和影响。我们的分析表明,对逆向进动的旋转,倾斜,CV DN吸积盘的最佳描述是差速旋转,倾斜盘,其附接的旋转倾斜环位于最里面的盘瓣环附近。与其他人的观察和数值模拟相一致,我们发现数值模拟的CV DN吸积盘作为一个单元逆行进。我们对逆行进的最终简化表达式与我们的数值模拟结果以及似乎具有主序次要的选择性观测系统非常吻合。我们的结果表明,逆行进的主要来源是潮汐扭矩,例如地球上的月亮和太阳。另外,这些潮汐扭矩对于一个构件正在旋转和倾斜的各种系统应该是通用的,而不管是否存在吸积盘。我们的结果表明,吸积盘的几何形状直接影响盘的进动速度。

著录项

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