activity
20142023
most citedMagnetic reconnection between small-scale loops observed with the New Vacuum Solar Telescope

86 citations · 314 across the 8 of their papers we have counts for

collaborators

6 papers

astro-ph.SR201626 cited

Enhancement of a sunspot light wall with external disturbances

Shuhong Yang, Jun Zhang, Robert Erdélyi

Based on the \emph{Interface Region Imaging Spectrograph} observations, we study the response of a solar sunspot light wall to external disturbances. A flare occurrence near the li…

astro-ph.SR201620 cited

A solar flare disturbing a light wall above a sunspot light bridge

Yijun Hou, Jun Zhang, Ting Li +3

With the high-resolution data from the Interface Region Imaging Spectrograph, we detect a light wall above a sunspot light bridge in the NOAA active region (AR) 12403. In the 1330…

astro-ph.SR201486 cited

Magnetic reconnection between small-scale loops observed with the New Vacuum Solar Telescope

Shuhong Yang, Jun Zhang, Yongyuan Xiang

Using the high tempo-spatial resolution H images observed with the New Vacuum Solar Telescope, we report the solid observational evidence of magnetic reconnection between two se…

astro-ph.SR201471 cited

Direct Observations of Tether-cutting Reconnection During a Major Solar Event From 2014 February 24 to 25

Huadong Chen, Jun Zhang, Xin Cheng +3

Using the multi-wavelength data from Atmospheric Imaging Assembly on board the Solar Dynamic Observatory, we investigated two successive solar flares, a C5.1 confined flare and an…

astro-ph.SR201448 cited

Fine Structures and Overlying Loops of Confined Solar Flares

Shuhong Yang, Jun Zhang, Yongyuan Xiang

Using the H observations from the New Vacuum Solar Telescope at Fuxian Solar Observatory, we focus on the fine structures of three confined flares and the issue why all the thre…

astro-ph.SR201463 cited

New Vacuum Solar Telescope observations of a flux rope tracked by a filament activation

Shuhong Yang, Jun Zhang, Zhong Liu +1

One main goal of the New Vacuum Solar Telescope (NVST) which is located at the \emph{Fuxian Solar Observatory} is to image the Sun at high resolution. Based on the high spatial and…