Spiral patterns in planetesimal circumbinary disks
arXiv:1407.5493 · doi:10.1088/0004-637X/805/1/38
Abstract
Planet formation scenarios and the observed planetary dynamics in binaries pose a number of theoretical challenges, especially in what concerns circumbinary planetary systems. We explore the dynamical stirring of a planetesimal circumbinary disk in the epoch when the gas component disappears. For this purpose, following theoretical approaches by Heppenheimer (1978) and Moriwaki and Nakagawa (2004), we develop a secular theory for the dynamics of planetesimals in circumbinary disks. If the binary is eccentric and its components have unequal masses, a spiral density wave is generated, engulfing the disk on the secular timescale, which may exceed 10^7 yr, depending on the problem parameters. The spiral pattern is transient; thus, its observed presence may betray system's young age. We explore the pattern both analytically and in numerical experiments. The derived analytical spiral is a modified lituus; it matches the numerical density wave in the gas-free case perfectly. Using the SPH scheme, we explore the effect of residual gas on the wave propagation.
21 pages, 5 figures
References in corpus (12)
- Direct Imaging of Fine Structures in Giant Planet Forming Regions of the Protoplanetary Disk around AB Aurigae
- Dust retention in protoplanetary disks
- Relative velocities among accreting planetesimals in binary systems: the circumprimary case
- Subaru Imaging of Asymmetric Features in a Transitional Disk in Upper Scorpius
- Spiral arms in the disk of HD 142527 from CO emission lines with ALMA
- Planetesimal and gas dynamics in binaries
- Planet Formation in Binary Stars: The case of Gamma Cephei
- Active-Region Tilt Angles: Magnetic Versus White-Light Determinations of Joy's Law
- A Spitzer Five-Band Analysis of the Jupiter-Sized Planet TrES-1
- Angular Momentum Exchange by Gravitational Torques and Infall in the Circumbinary Disk of the Protostellar System L1551 NE
- Chaotic zones around gravitating binaries
- Hydrodynamic Processes in Young Binary Systems as a Source of Cyclic Variations of Circumstellar Extinction