论文标题

KMT-2021-BLG-1077L:通过微透镜检测到的第五个确认的多透明系统

KMT-2021-BLG-1077L: The fifth confirmed multiplanetary system detected by microlensing

论文作者

Han, Cheongho, Gould, Andrew, Bond, Ian A., Jung, Youn Kil, Albrow, Michael D., Chung, Sun-Ju, Hwang, Kyu-Ha, Ryu, Yoon-Hyun, Shin, In-Gu, Shvartzvald, Yossi, Yee, Jennifer C., Zang, Weicheng, Cha, Sang-Mok, Kim, Dong-Jin, Kim, Seung-Lee, Lee, Chung-Uk, Lee, Dong-Joo, Lee, Yongseok, Park, Byeong-Gon, Pogge, Richard W., Kim, Doeon, Abe, Fumio, Barry, Richard K., Bennett, David P., Bhattacharya, Aparna, Fujii, Hirosane, Fukui, Akihiko, Hirao, Yuki, Itow, Yoshitaka, Kirikawa, Rintaro, Koshimoto, Naoki, Kondo, Iona, Matsubara, Yutaka, Matsumoto, Sho, Miyazaki, Shota, Muraki, Yasushi, Olmschenk, Greg, Okamura, Arisa, Ranc, Clément, Rattenbury, Nicholas J., Satoh, Yuki, Silva, Stela Ishitani, Sumi, Takahiro, Suzuki, Daisuke, Toda, Taiga, Tristram, Paul J., Vandorou, Aikaterini, Yama, Hibiki

论文摘要

高磁化微透析事件KMT-2021-BLG-1077在峰周围的区域表现出微妙而复杂的异常模式。我们分析事件的透镜光曲线,目的是揭示异常的性质。我们结合多种解释来测试各种模型。我们发现异常无法通过通常的三体(2L1和1L2S)模型来解释。与三体模型相比,2L2S模型可以改善拟合度,但仍然留下明显的残留物。另一方面,3L1S解释产生了一个模型,该模型解释了镜头光曲线中所有主要异常特征。 According to the 3L1S interpretation, the estimated mass ratios of the lens companions to the primary are $\sim 1.56 \times 10^{-3}$ and $\sim 1.75 \times 10^{-3}$, which correspond to $\sim 1.6$ and $\sim 1.8$ times the Jupiter/Sun mass ratio, respectively, and therefore the lens is a multiplanetary system containing two giant行星。 With the constraints of the event time-scale and angular Einstein radius, it is found that the host of the lens system is a low-mass star of mid-to-late M spectral type with a mass of $M_{\rm h} = 0.14^{+0.19}_{-0.07}~M_\odot$, and it hosts two gas giant planets with masses of美元行星躺在主机的积雪线上,带有$ a _ {\ perp,{\ rm p} _1} = 1.26^{+1.41} _ { - 1.08}〜{\ rm au} $和$ a _ perp,{ p} _2} = 0.93^{+1.05} _ { - 0.80}〜{\ rm au} $。行星系统位于银河系凸起的距离为$ d _ {\ rm l} = 8.24^{+1.02} _ { - 1.16}〜{\ rm kpc} $。该事件的镜头是通过在OGLE-2006-BLG-109L,OGLE-2012-BLG-0026L,OGLE-2018-BLG-1011L和OGLE-2019-BLG-0468L下进行微透镜检测到的第五个确认的多层面系统。

The high-magnification microlensing event KMT-2021-BLG-1077 exhibits a subtle and complex anomaly pattern in the region around the peak. We analyze the lensing light curve of the event with the aim of revealing the nature of the anomaly. We test various models in combination with several interpretations. We find that the anomaly cannot be explained by the usual three-body (2L1S and 1L2S) models. The 2L2S model improves the fit compared to the three-body models, but it still leaves noticeable residuals. On the other hand, the 3L1S interpretation yields a model explaining all the major anomalous features in the lensing light curve. According to the 3L1S interpretation, the estimated mass ratios of the lens companions to the primary are $\sim 1.56 \times 10^{-3}$ and $\sim 1.75 \times 10^{-3}$, which correspond to $\sim 1.6$ and $\sim 1.8$ times the Jupiter/Sun mass ratio, respectively, and therefore the lens is a multiplanetary system containing two giant planets. With the constraints of the event time-scale and angular Einstein radius, it is found that the host of the lens system is a low-mass star of mid-to-late M spectral type with a mass of $M_{\rm h} = 0.14^{+0.19}_{-0.07}~M_\odot$, and it hosts two gas giant planets with masses of $M_{\rm p_1}=0.22^{+0.31}_{-0.12}~M_{\rm J}$ and $M_{\rm p_2}=0.25^{+0.35}_{-0.13}~M_{\rm J}$. The planets lie beyond the snow line of the host with projected separations of $a_{\perp, {\rm p}_1}=1.26^{+1.41}_{-1.08}~{\rm AU}$ and $a_{\perp, {\rm p}_2}=0.93^{+1.05}_{-0.80}~{\rm AU}$. The planetary system resides in the Galactic bulge at a distance of $D_{\rm L}=8.24^{+1.02}_{-1.16}~{\rm kpc}$. The lens of the event is the fifth confirmed multiplanetary system detected by microlensing following OGLE-2006-BLG-109L, OGLE-2012-BLG-0026L, OGLE-2018-BLG-1011L, and OGLE-2019-BLG-0468L.

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