Time evolution of Mg II in SDSS J2320+0024: Implications for a subparsec binary supermassive black hole system

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2025-03-19 DOI:10.1051/0004-6361/202453600
Marta Fatović, Dragana Ilić, Andjelka B. Kovačević, Lovro Palaversa, Saša Simić, Luka Č. Popović, Karun Thanjavur, Oleksandra Razim, Željko Ivezić, Minghao Yue, Xiaohui Fan
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Abstract

Context. We present results from our spectroscopic follow-up of SDSS J2320+0024, a candidate binary supermassive black hole (SMBH) with a suspected subparsec separation, identified by a 278-day periodicity observed in its multiband optical light curves. Such systems serve as a crucial link between binaries with long periods (tens of years), which are influenced by tidal forces with minimal gravitational wave damping, and ultra-short-period binaries (≤order of days), which are dominated by gravitational wave-driven inspiral.Aims. We investigated the dramatic variability in the complex Mg II emission line profile with the aim of testing the alignments of the observed photometric light curves and the spectroscopic signatures in the context of the binary SMBH system.Methods. We extracted the pure broad Mg II line from newly obtained Gemini and Magellan spectra and measured the emission line parameters to determine the fundamental dynamical parameters of the SMBH’s binary system. We adopted the PoSKI subparsec binary SMBH model, which includes a broad-line region around a less massive component and a circumbinary broad-line region, to interpret the observed variability in the spectral profile.Results. We find that the Mg II broad-line profile has a distinctive complex shape, with asymmetry and two peaks, which has varied across recent and archival observations. The temporal variability of the Mg II line profile may be associated with emission from the binary SMBH system, whose components have masses M1 = 2 × 107M and M2 = 2 × 108M and eccentricity e = 0.1. We discuss other plausible physical interpretations. With a total estimated mass of ∼109M and a sub-annual orbital period, this system may be a rare example of a high-mass compact SMBH binary candidate and, thus, should be part of further investigations of the evolution of binary systems. This study highlights the synergies between spectroscopic follow-up and future massive time-domain photometric surveys, such as the Vera C. Rubin Observatory Legacy Survey of Space and Time.
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SDSS J2320+0024中Mg II的时间演化:对亚秒差距双星超大质量黑洞系统的启示
上下文。我们展示了我们对SDSS J2320+0024的光谱跟踪结果,这是一个候选的双星超大质量黑洞(SMBH),其距离疑似为亚秒差距,通过在其多波段光学光曲线中观察到的278天周期来识别。这样的系统是长周期双星(几十年)和超短周期双星(≤天)之间的关键联系,长周期双星受潮汐力的影响,引力波阻尼最小,而超短周期双星受引力波驱动的激励目标主导。我们研究了复杂的Mg II发射线轮廓的戏剧性变化,目的是测试在双星SMBH系统背景下观测到的光度光曲线和光谱特征的对齐。我们从新获得的双子座和麦哲伦光谱中提取了纯宽Mg II谱线,并测量了发射谱线参数,以确定SMBH双星系统的基本动力学参数。我们采用PoSKI亚秒差距双星SMBH模型,该模型包括围绕质量较小分量的宽线区域和环双星宽线区域,来解释在光谱剖面中观测到的变化。我们发现Mg II的宽线剖面具有独特的复杂形状,具有不对称和两个峰,在最近和档案观测中有所不同。Mg II线轮廓的时间变化可能与双星SMBH系统的发射有关,该系统的组成质量为M1 = 2 × 107 M⊙和M2 = 2 × 108 M⊙,偏心e = 0.1。我们讨论其他似是而非的物理解释。该系统估计总质量为~ 109 M⊙,轨道周期为次年,可能是一个罕见的高质量致密SMBH双星候选者,因此应该成为进一步研究双星系统演化的一部分。这项研究强调了光谱跟踪和未来大规模时域光度调查之间的协同作用,例如Vera C. Rubin天文台的空间和时间遗产调查。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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