2013ApJ...776...85S


Query : 2013ApJ...776...85S

2013ApJ...776...85S - Astrophys. J., 776, 85 (2013/October-3)

Atmospheric dynamics of brown dwarfs and directly imaged giant planets.

SHOWMAN A.P. and KASPI Y.

Abstract (from CDS):

A variety of observations provide evidence for vigorous motion in the atmospheres of brown dwarfs and directly imaged giant planets. Motivated by these observations, we examine the dynamical regime of the circulation in the atmospheres and interiors of these objects. Brown dwarfs rotate rapidly, and for plausible wind speeds, the flow at large scales will be rotationally dominated. We present three-dimensional, global, numerical simulations of convection in the interior, which demonstrate that at large scales, the convection aligns in the direction parallel to the rotation axis. Convection occurs more efficiently at high latitudes than low latitudes, leading to systematic equator-to-pole temperature differences that may reach ∼1 K near the top of the convection zone. The interaction of convection with the overlying, stably stratified atmosphere will generate a wealth of atmospheric waves, and we argue that, as in the stratospheres of planets in the solar system, the interaction of these waves with the mean flow will cause a significant atmospheric circulation at regional to global scales. At large scales, this should consist of stratified turbulence (possibly organizing into coherent structures such as vortices and jets) and an accompanying overturning circulation. We present an approximate analytic theory of this circulation, which predicts characteristic horizontal temperature variations of several to ∼50 K, horizontal wind speeds of ∼10-300 m/s, and vertical velocities that advect air over a scale height in ∼105-106 s. This vertical mixing may help to explain the chemical disequilibrium observed on some brown dwarfs. Moreover, the implied large-scale organization of temperature perturbations and vertical velocities suggests that near the L/T transition, patchy clouds can form near the photosphere, helping to explain recent observations of brown-dwarf variability in the near-IR.

Abstract Copyright:

Journal keyword(s): brown dwarfs - convection - methods: numerical - stars: low-mass - turbulence - waves

Simbad objects: 10

goto Full paper

goto View the references in ADS

Number of rows : 10
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 HD 3561 PM* 00 38 18.8847646488 -32 39 27.517753764   10.59 9.96     G3V 15 0
2 SIMP J013656.5+093347.3 BD* 01 36 56.5605419830 +09 33 47.311965969           T2.0 128 0
3 2MASSI J0415195-093506 BD* 04 15 19.54368 -09 35 06.6732           T8.0 165 0
4 * bet Pic PM* 05 47 17.0876901 -51 03 59.441135 4.13 4.03 3.86 3.74 3.58 A6V 1901 1
5 HD 42581B BD* 06 10 34.80 -21 52 00.0           T6.5 504 0
6 TWA 27 LM* 12 07 33.4675524840 -39 32 54.016625184     19.95 17.99 15.88 M8IVe 337 0
7 TWA 27B BD* 12 07 33.50 -39 32 54.4           L3 280 0
8 GJ 570 D BD* 14 57 14.96256 -21 21 47.7504           T8 225 1
9 CFBDS J213926+022023 BD* 21 39 26.76936 +02 20 22.6968           L8.5+T3.5 90 0
10 HD 218396 El* 23 07 28.7157209544 +21 08 03.310767492   6.21 5.953     F0+VkA5mA5 1136 0

To bookmark this query, right click on this link: simbad:objects in 2013ApJ...776...85S and select 'bookmark this link' or equivalent in the popup menu