activity
20162020
most citedMeasurement of magnetic field and relativistic electrons along a solar flare current sheet

158 citations · 198 across the 3 of their papers we have counts for

collaborators

7 papers

astro-ph.SR2020158 cited

Measurement of magnetic field and relativistic electrons along a solar flare current sheet

Bin Chen, Chengcai Shen, Dale E. Gary +8

In the standard model of solar flares, a large-scale reconnection current sheet is postulated as the central engine for powering the flare energy release and accelerating particles…

astro-ph.SR2019

The Acceleration of Energetic Particles at Coronal Shocks and Emergence of a Double Power Law Feature in Particle Energy Spectra

Xiangliang Kong, Fan Guo, Yao Chen +1

We present numerical modelling of particle acceleration at coronal shocks propagating through a streamer-like magnetic field by solving the Parker transport equation with spatial d…

astro-ph.SR2019

Broken-up Spectra of the Loop-top Hard X-ray Source during a Solar Limb Flare

Hao Ning, Yao Chen, Jeongwoo Lee +3

Solar hard X-rays (HXRs) appear in the form of either footpoint sources or coronal sources, and each individual source provides its own critical information on acceleration of nont…

astro-ph.SR2019

Effect of the Temperature of Background Plasma and the Energy of Energetic Electrons on Z-Mode Excitation

Chuanyang Li, Yao Chen, Xiangliang Kong +2

It has been suggested that the Z-mode instability driven by energetic electrons with a loss-cone type velocity distribution is one candidate process behind the continuum and zebra…

astro-ph.SR201740 cited

The acceleration of high-energy protons at coronal shocks: the effect of large-scale streamer-like magnetic field structures

Xiangliang Kong, Fan Guo, Joe Giacalone +2

Recent observations have shown that coronal shocks driven by coronal mass ejections can develop and accelerate particles within several solar radii in large solar energetic particl…

astro-ph.SR2017

EUV and Magnetic Activities Associated with Type-I Solar Radio Bursts

Chuanyang Li, Yao Chen, Bing Wang +4

Type-I bursts (i.e. noise storms) are the earliest-known type of solar radio emission at the metre wavelength. They are believed to be excited by non-thermal energetic electrons ac…