{"title":"The Importance of Ambipolar Heating in the Standard Thin Accretion Disk with Outflows","authors":"Mahmoud Gholipour and Amir Abbas Eslami Shafigh","doi":"10.3847/1538-4357/ad822b","DOIUrl":null,"url":null,"abstract":"This study examines the importance of the thermal effects of ambipolar diffusion (AD), by analyzing the governing properties in the middle and outer regions of a standard thin accretion disk with outflows. To accomplish this, we derive the nonideal magnetohydrodynamic equations, considering both the dynamical and thermal impacts of AD in these regions of the disk. In a stationary state, we utilize the self-similar technique to analyze the vertical structure of a disk with outflows and express the ambipolar diffusivity in terms of the Alfvén velocity and the Elsässer number. Our main focus is on the vertical temperature profile at large radii of the disk when the values of the Elsässer number are small. While the findings indicate that AD heating has minimal effects within the disk, it does play a critical role near the disk surface. When the Elsässer number is low, there is a notable rate of outflows and disk evaporation, resulting in angular momentum transport in these regions. This issue becomes important when we decrease the value of turbulent viscosity, as it leads to highlighting the AD heating effect. This allows the surface regions to become hotter and results in an increase in the drive of the outflows. The results of this research may be important for studying disk coronae and disk dispersal in the middle and outer regions of the thin accretion disk.","PeriodicalId":501813,"journal":{"name":"The Astrophysical Journal","volume":"34 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-11-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"The Astrophysical Journal","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3847/1538-4357/ad822b","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
This study examines the importance of the thermal effects of ambipolar diffusion (AD), by analyzing the governing properties in the middle and outer regions of a standard thin accretion disk with outflows. To accomplish this, we derive the nonideal magnetohydrodynamic equations, considering both the dynamical and thermal impacts of AD in these regions of the disk. In a stationary state, we utilize the self-similar technique to analyze the vertical structure of a disk with outflows and express the ambipolar diffusivity in terms of the Alfvén velocity and the Elsässer number. Our main focus is on the vertical temperature profile at large radii of the disk when the values of the Elsässer number are small. While the findings indicate that AD heating has minimal effects within the disk, it does play a critical role near the disk surface. When the Elsässer number is low, there is a notable rate of outflows and disk evaporation, resulting in angular momentum transport in these regions. This issue becomes important when we decrease the value of turbulent viscosity, as it leads to highlighting the AD heating effect. This allows the surface regions to become hotter and results in an increase in the drive of the outflows. The results of this research may be important for studying disk coronae and disk dispersal in the middle and outer regions of the thin accretion disk.
本研究通过分析带有外流的标准薄吸积盘的中层和外层区域的支配特性,研究了伏极扩散(AD)的热效应的重要性。为此,我们推导了非理想磁流体力学方程,同时考虑了 AD 在磁盘这些区域的动力学和热学影响。在静止状态下,我们利用自相似技术分析了带有外流的磁盘的垂直结构,并用阿尔弗韦恩速度和埃尔塞数表示了伏极扩散性。我们的主要研究重点是当埃尔塞数值较小时,圆盘大半径处的垂直温度曲线。研究结果表明,AD 加热对圆盘内部的影响微乎其微,但在圆盘表面附近却起着至关重要的作用。当埃尔塞数较低时,外流和磁盘蒸发的速度明显加快,从而导致这些区域的角动量传输。当我们降低湍流粘度值时,这个问题就变得很重要了,因为它会导致 AD 加热效应凸显。这使得表面区域变得更热,从而增加了外流的驱动力。这项研究的结果可能对研究薄吸积盘中部和外部区域的盘冠和盘散布具有重要意义。