Successive occurrences of quasi-circular ribbon flares in a fan-spine-like configuration involving hyperbolic flux tube
arXiv:2101.08164 · doi:10.1093/mnras/stab175
Abstract
We present a comprehensive analysis of the formation and evolution of a fan-spine-like configuration that developed over a complex photospheric configuration where dispersed negative polarity regions were surrounded by positive polarity regions. This unique photospheric configuration, analogous to the geological "atoll" shape, hosted four homologous flares within its boundary. Computation of the degree of squashing factor (Q) maps clearly revealed an elongated region of high Q-values between the inner and outer spine-like lines, implying the presence of an hyperbolic flux tube (HFT). The coronal region associated with the photospheric atoll configuration was distinctly identified in the form of a diffused dome-shaped bright structure directly observed in EUV images. A filament channel resided near the boundary of the atoll region. The activation and eruption of flux ropes from the filament channel led to the onset of four eruptive homologous quasi-circular ribbon flares within an interval of 11 hours. During the interval of the four flares, we observed continuous decay and cancellation of negative polarity flux within the atoll region. Accordingly, the apparent length of the HFT gradually reduced to a null-point-like configuration before the fourth flare. Prior to each flare, we observed localised brightening beneath the filaments which, together with flux cancellation, provided support for the tether-cutting model of solar eruption. The analysis of magnetic decay index revealed favourable conditions for the eruption, once the pre-activated flux ropes attained the critical heights for torus instability.
20 pages, 11 figures, 3 tables; accepted for publication in Monthly Notices of the Royal Astronomical Society
References in corpus (26)
- Torus instability
- Ideal kink instability of a magnetic loop equilibrium
- Preprocessing of vector magnetograph data for a non-linear force-free magnetic field reconstruction
- Observation of An Evolving Magnetic Flux Rope Prior To and During A Solar Eruption
- Slow Rise and Partial Eruption of a Double-Decker Filament. I Observations and Interpretation
- Formation of a Double-decker Magnetic Flux Rope in the Sigmoidal Solar Active Region 11520
- A trilinear method for finding null points in a 3D vector space
- Catastrophe versus instability for the eruption of a toroidal solar magnetic flux rope
- Magnetic Reconnection During the Two-Phase Evolution of a Solar Eruptive Flare
- Magnetic helicity budget of solar active regions prolific of eruptive and confined flares
- Critical Height of the Torus Instability in Two-Ribbon Solar Flares
- Round-trip Slipping Motion of the Circular Flare Ribbon Evidenced in a Fan-spine Jet
- Coronal cavities: observations and implications for the magnetic environment of prominences
- Formation and eruption of a flux rope from the sigmoid active region NOAA 11719 and associated M6.5 flare: A multi-wavelength study
- Magnetohydrodynamic Simulation of Magnetic Null-point Reconnections and Coronal dimmings during the X2.1 flare in NOAA AR 11283
- Large-scale contraction and subsequent disruption of coronal loops during various phases of the M6.2 flare associated with the confined flux rope eruption
- On the role of repetitive magnetic reconnections in evolution of magnetic flux-ropes in solar corona
- Onset of a Large Ejective Solar Eruption from a Typical Coronal-Jet-Base Field Configuration
- Generation mechanisms of quasi-parallel and quasi-circular flare ribbons in a confined flare
- Magnetic nulls and super-radial expansion in the solar corona
- Development of a Confined Circular-cum-parallel Ribbon Flare and Associated Pre-flare Activity
- HXR emission from an activated flux rope and subsequent evolution of an eruptive long duration solar flare
- Eruptive-Impulsive Homologous M-class Flares Associated with Double-Decker Flux Rope Configuration in Mini-Sigmoid of NOAA 12673
- Identification of Pre-flare Processes and Their Possible Role in Driving a Large-scale Flux Rope Eruption with Complex M-class Flare in the Active Region NOAA 12371
- Observational and model analysis of a two-ribbon flare possibly induced by a neighbouring blowout jet
- A Hot Cusp-Shaped Confined Solar Flare
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- Statistical analysis of circular-ribbon flares
- Multiwavelength Signatures of Episodic Null Point Reconnection in a Quadrupolar Magnetic Configuration and the Cause of Failed Flux Rope Eruption
- Two-stage evolution of an extended C-class eruptive flaring activity from sigmoid active region NOAA 12734: SDO and Udaipur-CALLISTO observations
- Homologous compact major blowout-eruption solar flares and their production of broad CMEs
- Evolution of magnetic fields and energy release processes during homologous eruptive flares