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Adaptive PSF fitting - a highly performing photometric method and light curves of the GLS H1413+117: time delays and micro-lensing effects

机译:自适应PSF拟合-高性能的光度法和GLS H1413 + 117的光曲线:时间延迟和微透镜效果

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摘要

We present new photometric observations of H1413+117 acquired during seasons between 2001 and 2008 in order to estimate the time delays between the lensed quasar images and to characterize at best the on-going micro-lensing events. We propose a highly performing photometric method called the adaptive point spread function fitting and have successfully tested this method on a large number of simulated frames. This has enabled us to estimate the photometric error bars affecting our observational results. We analysed the V- and R-band light curves and V-R colour variations of the A-D components which show short- and long-term brightness variations correlated with colour variations. Using the χ[SUP]2[/SUP] and dispersion methods, we estimated the time delays on the basis of the R-band light curves over the seasons between 2003 and 2006. We have derived the new values: Δt[SUB]AB[/SUB] = -17.4 ± 2.1, Δt[SUB]AC[/SUB] = -18.9 ± 2.8 and Δt[SUB]AD[/SUB] = 28.8 ± 0.7 d using the χ[SUP]2[/SUP] method (B and C are leading, D is trailing) with 1σ confidence intervals. We also used available observational constraints (resp. the lensed image positions, the flux ratios in mid-IR and two sets of time delays derived in the present work) to update the lens redshift estimation. We obtained z_l = 1.95^{+0.06}_{-0.10} which is in good agreement with previous estimations. We propose to characterize two kinds of micro-lensing events: micro-lensing for the A, B, C components corresponds to typical variations of ∼10[SUP]-4[/SUP] mag d[SUP]-1[/SUP] during all the seasons, while the D component shows an unusually strong micro-lensing effect with variations of up to ∼10[SUP]-3[/SUP] mag d[SUP]-1[/SUP] during 2004 and 2005.
机译:我们提供2001年至2008年之间各个季节获取的H1413 + 117的新光度学观测值,以便估计透镜类星体图像之间的时间延迟,并最好地描述正在进行的微透镜事件。我们提出了一种称为自适应点扩展函数拟合的高性能测光方法,并已在大量模拟帧上成功测试了该方法。这使我们能够估计影响观察结果的光度误差线。我们分析了A-D分量的V和R波段光曲线以及V-R颜色变化,这些变化显示了与颜色变化相关的短期和长期亮度变化。使用χ[SUP] 2 [/ SUP]和分散法,我们根据2003年至2006年整个季节的R波段光曲线估算了时间延迟。我们得出了新值:Δt[SUB] AB [/ SUB] = -17.4±2.1,Δt[SUB] AC [/ SUB] = -18.9±2.8,Δt[SUB] AD [/ SUB] = 28.8±0.7 d,使用χ[SUP] 2 [/ SUP]方法(B和C在前,D在后)具有1σ置信区间。我们还使用了可用的观察约束条件(分别是镜头图像位置,中红外的通量比和本工作中得出的两组时间延迟)来更新镜头红移估计。我们获得了z_1 = 1.95 ^ {+ 0.06} _ {-0.10},这与以前的估计非常吻合。我们建议表征两种微透镜事件:A,B,C分量的微透镜对应于〜10 [SUP] -4 [/ SUP] mag d [SUP] -1 [/ SUP]的典型变化在所有季节中,D分量都表现出异常强的微透镜效果,在2004年和2005年之间的变化高达〜10 [SUP] -3 [/ SUP] mag d [SUP] -1 [/ SUP]。

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