activity
20172020
most citedObservational Evidence for Stochastic Shock Drift Acceleration of Electrons at the Earth's Bow Shock

72 citations · 234 across the 6 of their papers we have counts for

collaborators

9 papers

physics.plasm-ph20209 cited

Estimation of the electron density from spacecraft potential during high frequency electric field fluctuations

O. W. Roberts, R. Nakamura, K. Torkar +10

Spacecraft potential has often been used to infer electron density with much higher time resolution than is typically possible with plasma instruments. However, recently two studie…

physics.space-ph202026 cited

Direct Measurement of the Solar-Wind Taylor Microscale using MMS Turbulence Campaign Data

Riddhi Bandyopadhyay, William H. Matthaeus, Alexandros Chasapis +7

Using the novel Magnetospheric Multiscale (MMS) mission data accumulated during the 2019 MMS Solar Wind Turbulence Campaign, we calculate the Taylor microscale o…

physics.space-ph202016 cited

Ion-scale current structures in Short Large-Amplitude Magnetic Structures

Shan Wang, Li-Jen Chen, Naoki Bessho +7

We investigate electric current structures in Short Large-Amplitude Magnetic Structures (SLAMS) in the terrestrial ion foreshock region observed by the Magnetospheric Multiscale mi…

physics.space-ph2020

MMS SITL Ground Loop: Automating the burst data selection process

Matthew R. Argall, Colin Small, Samantha Piatt +13

Global-scale energy flow throughout Earth's magnetosphere (MSP) is catalyzed by processes that occur at Earth's magnetopause (MP). Magnetic reconnection is one process responsible…

physics.space-ph2020

Evolution of the Earth's Magnetosheath Turbulence: A statistical study based on MMS observations

Hui Li, Wence Jiang, Chi Wang +5

Composed of shocked solar wind, the Earth's magnetosheath serves as a natural laboratory to study the transition of turbulence from low Alfv{é}n Mach number, , to hig…

astro-ph.HE202072 cited

Observational Evidence for Stochastic Shock Drift Acceleration of Electrons at the Earth's Bow Shock

T. Amano, T. Katou, N. Kitamura +14

The first-order Fermi acceleration of electrons requires an injection of electrons into a mildly relativistic energy range. However, the mechanism of injection has remained a puzzl…