论文标题

五个Nova残留物的空间模型:Nova壳轴向比率,膨胀速度和速度类之间的相关性

Spatio-kinematic models of five nova remnants: correlations between nova shell axial ratio, expansion velocity, and speed class

论文作者

Santamaría, E., Guerrero, M. A., Zavala, S., Ramos-Larios, G., Toalá, J. A., Sabin, L.

论文摘要

我们提出了长时间的中间分散光谱观测和四个经典的新壳的窄带直接成像,即托尔,hrdel,dqher和quvul,以及Nova样源CKVUL。这些用于使用形态型建模工具形状来构建其卵形残留物的模型,以揭示其3D形状。所有这些Nova残余物,但CKVUL可以通过具有不同偏心度的岩石椭圆形贝壳来描述,从球形震荡到具有赤道成分HRDEL的高度细长壳。另一方面,CKVUL显示出更为复杂的结构,具有两对嵌套的双极裂片。从我们的模型中得出的椭圆形Nova壳的空间基因性特性包括它们的真实轴向比率。该参数有望与Nova的膨胀速度和下降时间C3(即它们的速度类别)相关,因为结果弹出与白色矮人的旋转材料以及旋转速度和磁场的相互作用。我们已经比较了这三个参数,包括文献中可用的两个Nova Shell的数据,即V533她和FH Ser。对于具有椭圆形形态的NOVA残留物的膨胀速度与轴向比率和下降时间C3之间存在抗相关性,其轴向比率与下降时间C3之间存在相关性,这证实了理论上的期望,即最快的Novae具有最小的轴向比率。我们注意到,Nova Shell Hrdel的高膨胀速度为615 km/s,与长期下降的时间C3为250天不一致。

We present long-slit intermediate-dispersion spectroscopic observations and narrow-band direct imaging of four classical nova shells, namely TAur, HRDel, DQHer and QUVul, and the nova-like source CKVul. These are used to construct models of their nebular remnants using the morpho-kinematic modelling tool Shape to reveal their 3D shape. All these nova remnants but CKVul can be described by prolate ellipsoidal shells with different eccentricity degree, from the spherical QUVul to the highly elongated shell with an equatorial component HRDel. On the other hand, CKVul shows a more complex structure, with two pairs of nested bipolar lobes. The spatio-kinematic properties of the ellipsoidal nova shells derived from our models include their true axial ratios. This parameter is expected to correlate with the expansion velocity and decline time C3 (i.e., their speed class) of a nova as the result the interaction of the ejecta with the circumstellar material and rotation speed and magnetic field of the white dwarf. We have compared these three parameters including data available in the literature for another two nova shells, V533 Her and FH Ser. There is an anti-correlation between the expansion velocity and the axial ratio and decline time C3 for nova remnants with ellipsoidal morphology, and a correlation between their axial ratios and decline times C3, confirming theoretical expectations that the fastest expanding novae have the smallest axial ratios. We note that the high expansion velocity of the nova shell HRDel of 615 km/s is inconsistent with its long decline time C3 of 250 days.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源