Solar Physics Papers
@SolarPapers
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Your source for recent papers published in the field of Solar Physics.
Joined May 2019
Here Shuhong Yang et al. investigate variations of the vector magnetic structures in the solar polar regions observed by Hinode https://t.co/555tRjxYPw
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Here Hao Yang et al. present a grid-constrained Fourier neural operator for magnetic field extrapolation of the solar corona https://t.co/qiBBNu7uaN
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Here Peijin Zhang et al. probe the turbulent corona and heliosphere using radio spectral imaging observation during the solar conjunction of the Crab Nebula https://t.co/cEpD2R35LZ
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Here Yajie Chen et al. investigate magnetic reconnection sustaining the mass budget of the solar wind https://t.co/wU634qgMHR
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Here Haopeng Wang et al. present time-evolving coronal modelling of the solar maximum around the solar storms in May 2024 https://t.co/65VLpMYiOM
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Here Domenico Trotta et al. investigate variability in energetic particle observations at strong interplanetary shocks with multi-spacecraft observations https://t.co/pHcvDYJWGy
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Here Valery Pipin et al. investigate helicity fluxes and hemispheric helicity rule of active regions emerging from the convection zone dynamo https://t.co/mtf73sbWdC
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Here Jeremy Grajeda et al. incorporate magnetic-field characteristics into EUV-based automated segmentation of coronal holes https://t.co/rsc9m5x2fh
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link.springer.com
Solar Physics - Coronal holes (CHs) are magnetically open regions that allow hot coronal plasma to escape from the Sun and form the high-speed solar wind. This wind can interact with Earth’s...
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Here Feiyang Sha et al. present mapping ground-based coronagraphic images to helioprojective-Cartesian coordinate system by image registration https://t.co/FaX5IXUO0y
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Here Zheng Sun et al. investigate current helicity in response to coronal mass ejections https://t.co/2l0UxJoFL4
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Here Sankalp Srivastava et al. investigate the relation between solar spicules and magnetohydrodynamic shocks https://t.co/9Velv0N7KA
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Here Melissa Pesce-Rollins et al. investigate ion-rich acceleration during an eruptive flux rope event in a multiple null-point configuration https://t.co/bzj2dnSL3A
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Here James Paul Mason et al. detect stellar CMEs via coronal dimming in the extreme ultraviolet https://t.co/M9VU2vRKQ0
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Here Michal Švanda et al. present intensities, velocities, and the photospheric magnetic field of an average solar active region https://t.co/PGm1dwyW4s
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Here Viacheslav Titov et al. present magnetogram-matching Biot-Savart law and decomposition of vector magnetograms https://t.co/T5UTdHo3Ge
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Here Kelly Victor-French et al. investigate the relationship between the kinematics of CMEs and the brightness of the corona https://t.co/0C42qXPKrr
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Here Eleni Nikou et al. investigate the accuracy and uncertainty of CME 3D reconstructions depending on the number of viewpoints in the heliosphere https://t.co/GltnCSJ4Nn
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Here Yudi Ou et al. investigate two events with spectacular moving structures in a failed solar filament eruption https://t.co/ZbTYTiRo0L
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Here Amaia Razquin et al. investigate coronal dimmings from AR 13664 during the May 2024 solar energetic events https://t.co/e0cyNzbz5S
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Here Wenyan Li et al. present solar energetic electron events with a spectral bump break https://t.co/P70C4Ch9qC
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