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2026 年 6 月 16 日 星期二 · 数据截至 arXiv / ADS 最新收录日
I.

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II.

核心文献

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优先级 70 · X射线双星与吸积致密天体 · 伽马暴 GRB

Radiation-driven Origin of Dynamically Significant Magnetic Fields around Accretion Disks

辐射驱动的吸积盘动力学显著磁场起源

M. K. Vyas, A. Pe'er

原文摘要Abstract

Magnetic fields play a central role in accretion physics around black holes (BHs), yet their physical origin within accretion flows remains an open problem. We investigate the generation and subsequent evolution of magnetic fields triggered by anisotropic radiation fields in BH accretion disks with compact rotating inner corona. We evolve the magnetic field using the generalized kinematic magnetic field evolution, including induction and Hall effects. The radiation field acts as a primary field generator, while azimuthal rotation in the magnetized plasma provides rapid amplification leading to magnetic-field strengths of order ∼10<SUP>8</SUP> G in the vicinity of a 10 M<SUB>⊙</SUB> BH, and accretion disk and corona emitting at Eddington limit. We show that this process is very fast: the generated magnetic fields exceed local equipartition estimates based on gas pressure within a viscous time scale. When vertical outflows are present, the amplified magnetic fields are advected outward. Our results demonstrate that radiation is not merely a passive component of accretion flows, but provides a robust and unavoidable trigger for the generation of dynamically significant magnetic fields. Furthermore, they provide a physically motivated pathway for the origin of large-scale, structured magnetic fields in and around accretion disks, without requiring magnetorotational-instability-driven turbulent amplification or externally advected magnetic flux. This mechanism offers a pathway toward magnetization of accretion disks and surrounding outflowing plasma without invoking externally supplied magnetic flux, and has broad implications for X-ray binaries, active galactic nuclei, and other transients such as gamma-ray bursts.

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AI 综述 AI-generated · 以原文为准
亮点

首次提出辐射场作为主动磁场发生器,而非被动成分;在爱丁顿吸积流中仅需黏滞时标便可超越气体分压,为吸积盘磁化提供自洽物理途径。

脉络与展望

黑洞吸积盘磁场的起源长期以来是高能天体物理的开放问题。传统解释依赖磁旋转不稳定性驱动的湍流放大或外部磁通量注入,但种子磁场的产生机制仍不明确。本工作揭示各向异性辐射场可自然产生种子磁场,并在旋转等离子体中通过感应和霍尔效应快速放大,填补了自洽磁化机制的关键缺失。该机制有望整合到未来的全球数值模拟中,研究其在X射线双星态跃迁、活动星系核喷流形成及伽马暴中心引擎中的作用,并预测相应的偏振和时变特征。

接收 2026-06-16 · 刊出 2026-07-20 · 收录 2026-07-28

边缘相关 4 篇 · 低相关性展开 +
优先级 20 · 多信使触发与联合

Electromagnetic Signatures of Supermassive Binary Black Holes: Synchrotron, Self-lensing Flares, and Jet Precession

Jiang, Hong-Xuan, Li, Xinyu, Xia, Jing-Ze, et al.

原文摘要Abstract

The recent evidence for a nanohertz gravitational-wave background from pulsar timing arrays highlights the urgent need to identify electromagnetic counterparts to supermassive binary black holes. Here, we perform global 3D general relativistic magnetohydrodynamic (GRMHD) simulations of a secondary black hole (mass ratio q = 0.1) interacting with a magnetically arrested disk (MAD) around a primary black hole using a time-dependent superposed Kerr─Schild metric and postprocessed general relativistic radiation transfer calculations based on the thermal electron distribution function (eDF). We explore three orbital configurations: a vertical impact orbit, a coplanar embedded orbit, and a high-spin, eccentric, inclined scenario. Despite clear orbital periodicity and recurrent shock formation, the thermal synchrotron light curves frequently lack expected shock-induced flares. In vertical impacts, shock brightenings are typically subdominant to the stochastic MAD variability of the primary black hole, unless viewed at specific alignment phases. Conversely, coplanar orbits produce distinctive, rapid flares driven by gravitational self-lensing. We identify a frequency-dependent emission hierarchy: the primary black hole dominates submillimeter flux, while the secondary dominates near-infrared emission due to higher electron temperatures in thermal eDF. Finally, spin─orbit coupling drives Lense─Thirring precession, yielding twisted, wobbling jets that following the tilt and precession of the primary black hole. Crucially, we show that intrinsic MAD turbulence can easily mask shock-induced radio flares, making self-lensing flares a more reliable electromagnetic counterpart candidate for supermassive binary black holes.

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超大质量双黑洞的电磁特征:同步辐射、自透镜耀发和喷流进动 · 通过3D GRMHD模拟和辐射传输计算,研究超大质量双黑洞在不同轨道构型下的电磁信号,发现自透镜耀发比激波耀发更可靠作为电磁对应体。

接收 2026-06-16 · 刊出 2026-07-21 · 收录 2026-07-28

优先级 10

Tracing the very early disruption of the Sagittarius dwarf galaxy in the distant Milky Way halo

Bayer, Manuel, Starkenburg, Else, Viswanathan, Akshara, et al.

原文摘要Abstract

Current models predict that at distances beyond 80 kpc in the Milky Way halo, we can find the earliest escaped stars from the merging Sagittarius dwarf galaxy. However, observational data on the Sagittarius stream at these distances are limited. This study examines an overdensity of red giant branch (RGB) stars potentially linked to Sagittarius merger debris. Using the Magellan Inamori Kyocera Echelle spectrograph of Las Campanas Observatory's Clay Telescope, we measured the radial velocities and metallicities of these stars. We compared their properties with model predictions of Sagittarius's disruption and other stellar tracers from the Dark Energy Spectroscopic Instrument Data Release 1 and RR Lyrae catalogues. Our spectral analysis confirms the significant tight clustering of four of these RGB stars in full 6D phase space. This tight clump is embedded within a larger spur-like feature of the Sagittarius stream in the southern sky. A comparison with Sagittarius stream models further strengthens this hypothesis and shows that this far spur could be composed of stars originally in the halo of the Sagittarius dwarf galaxy, stripped in the earliest phases of the interaction. The metallicity dispersion of the four stars of <inline-formula><tex-math>$0.15 ^ {+0.17} _ {-0.08}$</tex-math></inline-formula> around the average of [Fe/H] = <inline-formula><tex-math>$-1.46 ^ {+0.11} _ {-0.09}$</tex-math></inline-formula> is very low. This study provides the first spectroscopic view of the distant southern spur of Sagittarius, composed of stars likely stripped from Sagittarius's halo.

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追踪银河系遥远晕中人马座矮星系的早期瓦解 · 通过光谱观测确认了银河系遥远晕中四颗红巨星在六维相空间的紧密聚集,证明它们属于人马座流的一个南天远支,且金属丰度弥散很低,首次提供了这一早期剥离成分的光谱视图。

预印本 2026-06-16 · 刊出 2026-06-22 · 收录 2026-07-22

优先级 10

Casimir traversable wormholes in Gauss-Bonnet gravity

Mohammad Reza Mehdizadeh, Amir Hadi Ziaie

原文摘要Abstract

In this work, we study Casimir wormhole solutions and investigate satisfaction of energy conditions in the framework of Einstein-Gauss-Bonnet (EGB) gravity. We firstly find traversable wormhole solutions supported by a general form for the Casimir energy density. Applying a specific redshift function, we choose suitable parameters that respect the energy conditions in the vicinity of the throat due to the presence of higher order curvature terms. Then, we check the energy conditions considering non-constant redshift function and for suitable choice of model parameters, we find that these conditions are satisfied at infinity as well as in the vicinity of the throat. The stability of the Casimir traversable wormhole solutions are investigated using the Tolman-Oppenheimer-Volkoff (TOV) equation. Finally, we study trajectory of null as well as timelike particles in the wormhole spacetime.

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高斯-博内引力中的卡西米尔可穿越虫洞 · 在爱因斯坦-高斯-博内引力框架下研究了卡西米尔可穿越虫洞解,分析了能量条件的满足情况以及解的稳定性,并探讨了时空中的粒子轨迹。

预印本 2026-07-24 · 刊出 2026-06-16 · 收录 2026-07-28

优先级 5

Disentangling the Distant Stellar Halo Using K Giants in DESI Year 3 Data

Kizhuprakkat, Namitha, Cooper, Andrew P., Wang, Wenting, et al.

原文摘要Abstract

We present a sample of 88,959 K giants from Dark Energy Spectroscopic Instrument Milky Way Survey Year 3 data, which we use to characterize the chemo-dynamical properties of the stellar halo at Galactocentric distances of 12 to ∼100 kpc. Using HDBSCAN, we identify five prominent stellar halo substructures: Aleph, the Sagittarius stream, Gaia-Sausage-Enceladus (GSE), Cetus-Palca, and the Orphan─Chenab stream. We present the properties of each of these structures as they appear in our catalog, and examine how uncertainties on distance affect the characterization of substructure with this approach. We also examine regions associated with previously reported overdensities (such as the Virgo Overdensities and the Sagittarius spur) that we do not recover with HDBSCAN. The size and distance range of our catalog allows us to explore in detail the residual stellar halo, comprising stars that we do not associate with any substructure. We find that samples of ∼2000 outer halo stars with both highly prograde and highly retrograde angular momenta have similar metallicity distribution functions (MDFs), which do not resemble the MDFs of either GSE or Sagittarius. Both the prograde and retrograde residual halo MDFs are bimodal, with a metal-poor peak at [Fe/H] ∼ −2 and a metal-rich peak at [Fe/H] ∼ −1.3 (prograde) or −1.5 (retrograde). The MDF for lower-angular-momentum residual halo K giants does not show clear evidence for a metal-poor peak, and broadly resembles the MDF of GSE, even at much lower binding energies than GSE itself. We discuss possible interpretations of these findings for GSE accretion scenarios.

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利用DESI第三年数据中的K巨星解析遥远恒星晕 · 使用88,959颗K巨星样本识别出五个恒星晕子结构并分析残差晕金属丰度分布,对GSE吸积情景提出解释。

接收 2026-06-16 · 刊出 2026-07-17 · 收录 2026-07-28