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首页> 外文期刊>The Astrophysical journal >THE CHEMICAL COMPOSITION OF PRAESEPE (M44)
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THE CHEMICAL COMPOSITION OF PRAESEPE (M44)

机译:番木瓜(M44)的化学组成

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摘要

Star clusters have long been used to illuminate both stellar evolution and Galactic evolution. They also hold clues to the chemical and nucleosynthetic processes throughout the history of the Galaxy. We have taken high signal-to-noise (S/N), high-resolution spectra of 11 solar-type stars in the Praesepe open cluster to determine the chemical abundances of 16 elements: Li, C, O, Na, Mg, Al, Si, Ca, Sc, Ti, V, Cr, Fe, Ni, Y, and Ba. We have determined Fe from Fe I and Fe II lines and find [Fe/H] = +0.12 ±0.04. We find that Li decreases with temperature due to increasing Li depletion in cooler stars; it matches the Li-temperature pattern found in the Hyades. The [C/Fe] and [O/Fe] abundances are below solar and lower than the field star samples due to the younger age of Praesepe (0.7?Gyr) than the field stars. The alpha-elements, Mg, Si, Ca, and Ti, have solar ratios with respect to Fe, and are also lower than the field star samples. The Fe-peak elements, Cr and Ni, track Fe and have solar values. The neutron capture element [Y/Fe] is found to be solar, but [Ba/Fe] is enhanced relative to solar and to the field stars. Three Praesepe giants were studied by Carrera and Pancino; they are apparently enhanced in Na, Mg, and Ba relative to the Praesepe dwarfs. The Na enhancement may indicate proton-capture nucleosynthesis in the Ne → Na cycling with dredge-up into the atmospheres of the red giants.
机译:长期以来,星团一直被用来阐明恒星演化和银河演化。他们还为整个银河历史上的化学和核合成过程提供了线索。我们对Praesepe开放星团中的11个太阳型恒星进行了高信噪比(S / N)高分辨率光谱测定,确定了16种元素的化学丰度:Li,C,O,Na,Mg,Al ,Si,Ca,Sc,Ti,V,Cr,Fe,Ni,Y和Ba。我们已经从Fe I和Fe II线中确定了Fe,并发现[Fe / H] = +0.12±0.04。我们发现,由于温度较低的恒星中锂的消耗增加,Li随温度降低而降低。它与Hyades中的Li温度模式匹配。 [C / Fe]和[O / Fe]的丰度低于太阳且比野外星样本低,这是因为Praesepe(0.7?Gyr)的年龄比野外星的年轻。 Mg,Si,Ca和Ti的α元素相对于Fe具有日光比,并且也低于场星样品。铁峰元素Cr和Ni跟踪Fe并具有太阳值。发现中子俘获元素[Y / Fe]是太阳元素,但是[Ba / Fe]相对于太阳元素和场星具有增强作用。 Carrera和Pancino研究了三位Praesepe巨人;相对于Praesepe侏儒,它们的Na,Mg和Ba含量明显提高。 Na的增强可能表明在Ne→Na循环中质子俘获的核合成,并向红色巨人的大气中挖泥。

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