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Near-infrared photometry of WISE J085510.74–071442.5

机译:WISE J085510.74–071442.5的近红外光度法

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Aims. We aim at obtaining near-infrared photometry and deriving the mass, age, temperature, and surface gravity of WISE J085510.74–071442.5 (J0855–0714), which is the coolest object beyond the solar system currently known. Methods. We used publicly available data from the archives of the Hubble Space Telescope (HST) and the Very Large Telescope (VLT) to determine the emission of this source at 1.153 μ m ( F 110 W ) and 1.575 μ m ( CH_(4) -off). J0855–0714 was detected at both wavelengths with a signal-to-noise ratio of ≈ 10 ( F 110 W ) and ≈ 4 ( CH_(4) -off) at the peak of the corresponding point-spread-functions. Results. This is the first detection of J0855–0714 in the H -band wavelengths. We measured 26.31? ± ?0.10 and 23.22? ± ?0.35 mag in F 110 W and CH_(4) -off (Vega system). J0855–0714 remains unresolved in the HST images that have a spatial resolution of 0.22 ′′ . Companions at separations of 0.5 AU (similar mass and brightness) and at ~ 1 AU ( ≈ 1 mag fainter in the F 110 W filter) are discarded. By combining the new data with published photometry, including non-detections, we build the spectral energy distribution of J0855–0714 from 0.89 through 22.09 μ m, and contrast it against current solar-metallicity models of planetary atmospheres. We determine that the best spectral fit yields a temperature of 225–250?K, a bolometric luminosity of log? L / L _(⊙) = ?8.57 , and a high surface gravity of log? g = 5.0 (cm?s ~(-2) ), which suggests an old age although a gravity this high is not fully compatible with evolutionary models. After comparing our data with the cooling theory for brown dwarfs and planets, we infer a mass in the interval 2–10 M _(Jup) for ages of 1–12 Gyr and high atmospheric gravities of log? g ? 3.5 (cm?s ~(-2) ). If it had the age of the Sun, J0855–0714 would be a ≈ 5- M _(Jup) free-floating planetary-mass object. Conclusions. J0855–0714 meets the mass values previously determined for free-floating planetary-mass objects discovered in star-forming regions and young stellar clusters. Based on extrapolations of the substellar mass functions of young clusters to the field, as many J0855–0714-like objects as M5–L2 stars may be expected to populate the solar neighborhood.
机译:目的我们旨在获得近红外光度法,并推导WISE J085510.74–071442.5(J0855–0714)的质量,寿命,温度和表面重力,WISE是目前已知的太阳系以外最冷的物体。方法。我们使用了哈勃太空望远镜(HST)和超大型望远镜(VLT)档案中的公开可用数据来确定该源在1.153μm(F 110 W)和1.575μm(CH_(4)-关闭)。在相应的点扩展函数的峰值处,在两种波长下均检测到J0855–0714的信噪比为≈10(F 110 W)和≈4(CH_(4)-off)。结果。这是在H波段波长内首次检测到J0855-0714。我们测得26.31? ±0.10和23.22 F 110 W和CH_(4)-off(Vega系统)中为±0.35 mag。在空间分辨率为0.22''的HST图像中,J0855–0714仍然无法解析。间隔为0.5 AU(质量和亮度相似)和〜1 AU(F 110 W滤波器中≈1磁微弱)的同伴被丢弃。通过将新数据与包括未检测在内的已发布的测光法相结合,我们建立了J0855--0714从0.89到22.09μm的光谱能量分布,并将其与当前的行星大气太阳金属模型进行了对比。我们确定最佳光谱拟合可产生225–250?K的温度,即辐射强度的对数? L / L _(⊙)=?8.57,并且对数高表面对数? g = 5.0(cm?s〜(-2)),这表明年龄虽然很高,但重力与进化模型并不完全兼容。在将我们的数据与褐矮星和行星的冷却理论进行比较之后,我们推断出年龄在1-12 Gyr的高重力大气对数在2-10 M _(Jup)区间的质量? G ? 3.5(cm?s〜(-2))。如果它具有太阳的年龄,则J0855–0714将是≈5- M _(Jup)自由漂浮的行星质量物体。结论。 J0855-0714符合先前为恒星形成区和年轻恒星团中发现的自由漂浮行星质量物体确定的质量值。根据年轻星团的亚星际质量函数向该场的外推,可以预期与太阳系M5-L2一样多的J0855-0714-类天体将分布在太阳附近。

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