Weather on Other Worlds. IV. H emission and photometric variability are not correlated in L0T8 dwarfs
arXiv:1704.06940 · doi:10.3847/1538-4357/aa6f11
Abstract
Recent photometric studies have revealed that surface spots that produce flux variations are present on virtually all L and T dwarfs. Their likely magnetic or dusty nature has been a much-debated problem, the resolution to which has been hindered by paucity of diagnostic multi-wavelength observations. To test for a correlation between magnetic activity and photometric variability, we searched for H emission among eight L3T2 ultra-cool dwarfs with extensive previous photometric monitoring, some of which are known to be variable at 3.6 m or 4.5 m. We detected H only in the non-variable T2 dwarf 2MASS J125453930122474. The remaining seven objects do not show H emission, even though six of them are known to vary photometrically. Combining our results with those for 86 other L and T dwarfs from the literature show that the detection rate of H emission is very high (94) for spectral types between L0 and L3.5 and much smaller (20) for spectral types L4, while the detection rate of photometric variability is approximately constant (3055) from L0 to T8 dwarfs. We conclude that chromospheric activity, as evidenced by H emission, and large-amplitude photometric variability are not correlated. Consequently, dust clouds are the dominant driver of the observed variability of ultra-cool dwarfs at spectral types at least as early as L0.
12 pages, 4 figures, accepted for publication in ApJ
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