{"title":"Measurements of the Ca ii infrared triplet emission lines of pre-main-sequence stars","authors":"Mai Yamashita, Y. Itoh, Y. Takagi","doi":"10.1093/pasj/psaa073","DOIUrl":null,"url":null,"abstract":"We investigated the chromospheric activity of 60 pre-main-sequence (PMS) stars in four molecular clouds and five moving groups. It is considered that strong chromospheric activity is driven by the dynamo processes generated by the stellar rotation. In contrast, several researchers have pointed out that the chromospheres of PMS stars are activated by mass accretion from their protoplanetary disks. In this study, the Ca II infrared triplet (IRT) emission lines were investigated utilizing medium- and high-resolution spectroscopy. The observations were conducted with Nayuta/MALLS and Subaru/HDS. Additionally, archive data obtained by Keck/HIRES, VLT/UVES, and VLT/X-Shooter was used. The small ratios of the equivalent widths indicate that Ca II IRT emission lines arise primarily in dense chromospheric regions. Seven PMS stars show broad emission lines. Among them, four PMS stars have more than one order of magnitude brighter emission line fluxes compared to the low-mass stars in young open clusters. The four PMS stars have a high mass accretion rate, which indicates that the broad and strong emission results from a large mass accretion. However, most PMS stars exhibit narrow emission lines. No significant correlation was found between the accretion rate and flux of the emission line. The ratios of the surface flux of the Ca II IRT lines to the stellar bolometric luminosity, R'_IRT, of the PMS stars with narrow emission lines are as large as the largest R'_IRT of the low-mass stars in the young open clusters. This result indicates that most PMS stars, even in the classical T Tauri star stage, have chromospheric activity similar to zero-age main-sequence stars.","PeriodicalId":8493,"journal":{"name":"arXiv: Solar and Stellar Astrophysics","volume":"18 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2020-07-18","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"arXiv: Solar and Stellar Astrophysics","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1093/pasj/psaa073","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
We investigated the chromospheric activity of 60 pre-main-sequence (PMS) stars in four molecular clouds and five moving groups. It is considered that strong chromospheric activity is driven by the dynamo processes generated by the stellar rotation. In contrast, several researchers have pointed out that the chromospheres of PMS stars are activated by mass accretion from their protoplanetary disks. In this study, the Ca II infrared triplet (IRT) emission lines were investigated utilizing medium- and high-resolution spectroscopy. The observations were conducted with Nayuta/MALLS and Subaru/HDS. Additionally, archive data obtained by Keck/HIRES, VLT/UVES, and VLT/X-Shooter was used. The small ratios of the equivalent widths indicate that Ca II IRT emission lines arise primarily in dense chromospheric regions. Seven PMS stars show broad emission lines. Among them, four PMS stars have more than one order of magnitude brighter emission line fluxes compared to the low-mass stars in young open clusters. The four PMS stars have a high mass accretion rate, which indicates that the broad and strong emission results from a large mass accretion. However, most PMS stars exhibit narrow emission lines. No significant correlation was found between the accretion rate and flux of the emission line. The ratios of the surface flux of the Ca II IRT lines to the stellar bolometric luminosity, R'_IRT, of the PMS stars with narrow emission lines are as large as the largest R'_IRT of the low-mass stars in the young open clusters. This result indicates that most PMS stars, even in the classical T Tauri star stage, have chromospheric activity similar to zero-age main-sequence stars.
我们研究了4个分子云和5个运动群中的60颗前主序星(PMS)的色球活动。据认为,强烈的色球活动是由恒星旋转产生的发电机过程驱动的。相反,一些研究人员指出,PMS恒星的色球是由原行星盘的质量吸积激活的。本文利用中分辨率和高分辨率光谱研究了Ca II红外三重态(IRT)发射谱线。观察是用Nayuta/MALLS和Subaru/HDS进行的。此外,还使用了Keck/HIRES、VLT/UVES和VLT/X-Shooter获得的存档数据。较小的等效宽度比值表明,Ca II IRT发射线主要出现在密集的色球区。七颗PMS恒星显示出广泛的发射线。其中,4颗PMS恒星的发射谱线通量比年轻疏散星团中的低质量恒星亮一个数量级以上。这四颗PMS恒星的质量吸积率很高,这表明广泛而强烈的发射是大质量吸积的结果。然而,大多数PMS恒星显示出狭窄的发射线。在吸积速率和发射线的通量之间没有发现显著的相关性。具有窄发射线的PMS恒星的Ca II IRT线的表面通量与恒星热光度R'_IRT之比与年轻疏散星团中低质量恒星的最大R'_IRT一样大。这一结果表明,即使在经典的金牛座T星阶段,大多数PMS恒星也具有类似于零年龄主序星的色球活动。