Behr BB, Cohen JG, McCarthy JK
Astrophys J. 2000 Mar 1;531(1):L37-L40. doi: 10.1086/312524.
High-resolution optical spectra of 18 blue horizontal-branch stars in the globular cluster M15 indicate that their stellar rotation rates and photospheric compositions vary strongly as a function of effective temperature. Among the cooler stars in the sample, at Teff approximately 8500 K, metal abundances are in rough agreement with the canonical cluster metallicity, and the vsini rotations appear to have a bimodal distribution, with eight stars at vsini<15 km s-1 and two stars at vsini approximately 35 km s-1. Most of the stars at Teff>/=10,000 K, however, are slowly rotating, vsini<7 km s-1, and their iron and titanium are enhanced by a factor of 300 to solar abundance levels. Magnesium maintains a nearly constant abundance over the entire range of Teff, and helium is depleted by factors of 10-30 in three of the hotter stars. Diffusion effects in the stellar atmospheres are the most likely explanation for these large differences in composition. Our results are qualitatively very similar to those previously reported for M13 and NGC 6752, but with even larger enhancement amplitudes, presumably due to the increased efficiency of radiative levitation at lower intrinsic [Fe/H]. We also see evidence for faster stellar rotation explicitly preventing the onset of the diffusion mechanisms among a subset of the hotter stars.
球状星团M15中18颗蓝色水平分支恒星的高分辨率光学光谱表明,它们的恒星自转速率和光球成分随有效温度变化很大。在样本中较冷的恒星中,有效温度约为8500K时,金属丰度与标准星团金属丰度大致相符,视向旋转速度(vsini)似乎呈双峰分布,8颗恒星的vsini<15 km s-1,2颗恒星的vsini约为35 km s-1。然而,大多数有效温度Teff≥10000K的恒星自转缓慢,vsini<7 km s-1,它们的铁和钛含量比太阳丰度水平提高了300倍。在整个有效温度范围内,镁的丰度几乎保持不变,在三颗较热的恒星中,氦的含量减少了10到30倍。恒星大气中的扩散效应最有可能解释这些成分上的巨大差异。我们的结果在定性上与之前报道的M13和NGC 6752的结果非常相似,但增强幅度更大,可能是由于在较低的固有[Fe/H]下辐射悬浮效率提高。我们还发现有证据表明,更快的恒星自转明确阻止了一部分较热恒星中扩散机制的开始。