Observability of Substructures in the Planet-forming Disk in the (Sub)centimeter Wavelength with SKA and ngVLA

Yinhao 寅昊 Wu 吴, Shang-Fei 尚飞 Liu 刘, Haochang 昊昌 Jiang 蒋, Sergei Nayakshin
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Abstract

Current imaging observations of protoplanetary disks using the Atacama Large Millimeter/submillimeter Array (ALMA) primarily focus on the submillimeter wavelength, leaving a gap in effective observational approaches for centimeter-sized dust, which is crucial to the issue of planet formation. The forthcoming Square Kilometre Array (SKA) and ngVLA may rectify this deficiency. In this paper, we employ multifluid hydrodynamic numerical simulations and radiative transfer calculations to investigate the potential of SKA1-Mid, ngVLA, and SKA2 for imaging protoplanetary disks at subcentimeter/centimeter wavelengths. We create mock images with ALMA/SKA/ngVLA at multiwavelengths based on the hydrodynamical simulation output and test different sensitivity and spatial resolutions. We discover that both SKA and ngVLA will serve as excellent supplements to the existing observational range of ALMA, and their high resolution enables them to image substructures in the disk’s inner region (∼5 au from the stellar). Our results indicate that SKA and ngVLA can be utilized for more extended monitoring programs in the centimeter wave band. While in the subcentimeter range, ngVLA possesses the capability to produce high-fidelity images within shorter observation times (∼1 hr on source time) than previous research, holding potential for future survey observations. We also discuss for the first time the potential of SKA2 for observing protoplanetary disks at a 0.7 cm wavelength.
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利用 SKA 和 ngVLA 在(亚)厘米波长观测行星形成盘中的子结构的可观测性
目前利用阿塔卡马大型毫米/亚毫米波阵列(ALMA)对原行星盘进行的成像观测主要集中在亚毫米波段,对厘米级尘埃的有效观测方法存在空白,而厘米级尘埃对行星形成问题至关重要。即将推出的平方公里阵列(SKA)和 ngVLA 可能会弥补这一不足。在本文中,我们利用多流体流体力学数值模拟和辐射传递计算来研究 SKA1-Mid、ngVLA 和 SKA2 在亚厘米/厘米波长下成像原行星盘的潜力。根据流体力学模拟输出,我们用 ALMA/SKA/ngVLA 绘制了多波长的模拟图像,并测试了不同的灵敏度和空间分辨率。我们发现,SKA 和 ngVLA 都能很好地补充 ALMA 现有的观测范围,而且它们的高分辨率使其能够对星盘内部区域(距离恒星 ∼ 5 au)的子结构成像。我们的研究结果表明,可以利用 SKA 和 ngVLA 在厘米波波段开展更广泛的监测计划。与以往的研究相比,ngVLA 在亚厘米波段具有在更短的观测时间(源时间 ∼ 1 小时)内生成高保真图像的能力,这为未来的巡天观测提供了潜力。我们还首次讨论了 SKA2 在 0.7 厘米波长观测原行星盘的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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