论文标题

处女座的环境调查追踪电离气体排放(遗迹).ix。 RAM压力降低到矮星系IC 3476中单个HII区域的尺度的影响

A Virgo Environmental Survey Tracing Ionised Gas Emission (VESTIGE).IX. The effects of ram pressure stripping down to the scale of individual HII regions in the dwarf galaxy IC 3476

论文作者

Boselli, A., Lupi, A., Epinat, B., Amram, P., Fossati, M., Anderson, J. P., Boissier, S., Boquien, M., Consolandi, G., Cote, P., Cuillandre, J. C., Ferrarese, L., Galbany, L., Gavazzi, G., Gomez-Lopez, J. A., Gwyn, S., Hensler, G., Hutchings, J., Kuncarayakti, H., Longobardi, A., Peng, E. W., Plana, H., Postma, J., Roediger, J., Roehlly, Y., Schimd, C., Trinchieri, G., Vollmer, B.

论文摘要

我们研究了在痕迹的背景下观察到的IB(S)M Galaxy IC 3476,这是对处女座群集的盲窄带HALPHA+[NII]成像调查。深窄带(NB)图像揭示了一个非常细化的离子气体分布,其特征是在星系中形成的星系前方的突出的香蕉形结构,由巨型HII区域形成,穿过恒星光盘,恒星形成的结构约为8 kpc,并从恒星盘的边缘中,也检测到深fuv fuv fuv fuv satos/uvuv Attos/uvit Image。这种特殊的形态表明,银河系正在经历几乎边缘的RAM压力剥离事件。 NB图像还表明,恒星形成活性在圆盘的前缘完全淬灭,在椎间盘的前缘,在相互作用过程中已除去气体。 SED拟合分析表明,这种淬灭发作是最近的(〜50 Myr),并且大致对应于内部区域中恒星形成活动的增加,相对于世俗进化的期望。对这些数据的分析,其角度分辨率允许研究扰动到单个HII区域的诱导效应,也表明,恒星形成活性的增加是由于星系的恒星盘对气体的压缩造成的,这能够增加其平均电子密度并增强星星形成过程产生明亮的HII区域。流体动力相互作用深深地扰动了离子气体成分的速度场,同时留下了恒星盘的影响。数据将数据与流体动力模拟进行比较,这些模拟考虑了不同的气相(原子,分子,电离)始终表明,扰动事件是最近的,再次证实了RAM压力剥离是一种猛烈的现象,能够在富裕环境中扰动星系的短时间表。

We study the IB(s)m galaxy IC 3476 observed in the context of VESTIGE, a blind narrow-band Halpha+[NII] imaging survey of the Virgo cluster. The deep narrow-band (NB) image reveals a very pertubed ionised gas distribution, characterised by a prominent banana-shaped structure in the front of the galaxy formed of giant HII regions crossing the stellar disc, with star forming structures at ~8 kpc from the edges of the stellar disc, detected also in a deep FUV ASTROSAT/UVIT image. This particular morphology indicates that the galaxy is undergoing an almost edge-on ram pressure stripping event. The NB image also shows that the star formation activity is totally quenched in the leading edge of the disc, where the gas has been removed during the interaction. The SED fitting analysis indicates that this quenching episode is very recent (~50 Myr), and roughly corresponds to an increase of the star formation activity in the inner regions with respect to what expected for secular evolution. The analysis of these data, whose angular resolution allows the study of the induced effects of the perturbation down to the scale of individual HII regions, also suggests that the increase of the star formation activity is due to the compression of the gas along the stellar disc of the galaxy, which is able to increase its mean electron density and boost the star formation process producing bright HII regions. The hydrodynamic interaction has deeply perturbed the velocity field of the ionised gas component while leaving unaffected that of the stellar disc. The comparison of the data with hydrodynamic simulations accounting for the different gas phases (atomic, molecular, ionised) consistently indicates that the perturbing event is very recent, once again confirming that ram pressure stripping is a violent phenomenon able to perturb on short timescales the evolution of galaxies in rich environments.

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