论文标题

通过罗马空间望远镜检测盘子围绕微蛋白源的内部区域

Detecting the inner regions of discs around sources of microlensing with Roman Space Telescope

论文作者

Sajadian, Sedighe, Salehi, Ali

论文摘要

双眼盘的内部区域会产生额外的近红外发射(NIR凸起)。从附近恒星中检测和研究这些NIR颠簸主要是通过红外干涉法进行的。在这项工作中,我们研究了通过对Nancy Grace Roman Space望远镜(RST)调查的观测值进行微透镜检测NIR凸起的可行性。我们首先模拟了带有近红外光盘的源恒星的微透明光曲线。可以从模拟中提取四个主要结论。 (i)如果镜头越过圆盘内半径,则出现两个额外的和宽的峰,并且微透镜光曲线的主要峰被扁平。 (ii)在具有透镜撞击参数的微透析事件中,大于圆盘内半径,圆盘可以破坏相对于最接近接近时间的光曲线的对称性。 (iii)在腐蚀性划分的二进制微透镜中,圆盘在进入苛性曲线之前和退出后立即产生宽峰。 (iv)W149滤光片在W149过滤器中的盘状扰动大于Z087滤光片,除非镜头越过圆盘冷凝半径。通过执行蒙特卡洛模拟,分别估计单个和二进制微透镜在\ wfirst〜中检测盘扰动的概率分别估计约3%和20%。我们预计,如果其5%的源恒星具有椎间盘,则RST在其微透镜调查过程中检测到约109个椎间盘诱导的扰动。

The inner region of circumstellar discs makes an extra near-infrared emission (NIR bump). Detecting and studying these NIR bumps from nearby stars have been done mostly through infrared interferometry. In this work, we study the feasibility of detecting NIR bumps for Galactic bulge stars through microlensing from observations by The Nancy Grace Roman Space Telescope (RST) survey. We first simulate microlensing light curves from source stars with discs in near-infrared. Four main conclusions can be extracted from the simulations. (i) If the lens is crossing the disc inner radius, two extra and wide peaks appear and the main peak of microlensing light curve is flattened. (ii) In microlensing events with the lens impact parameters larger than the disc inner radius, the disc can break the symmetry of light curves with respect to the time of closest approach. (iii) In caustic-crossing binary microlensing, the discs produce wide peaks right before entering and immediately after exiting from the caustic curves. (iv) The disc-induced perturbations are larger in the W149 filter than in the Z087 filter, unless the lens crosses the disc condensation radius. By performing a Monte Carlo simulation, the probabilities of detecting the disc perturbations by \wfirst~are estimated ~3 and 20 per cent in single and binary microlensing, respectively. We anticipate that RST detects around 109 disc-induced perturbations during its microlensing survey if 5 per cent of its source stars have discs.

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