activity
20192022
most citedThe Evolution and Role of Solar Wind Turbulence in the Inner Heliosphere

270 citations · 608 across the 8 of their papers we have counts for

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Showing physics.space-phShow all

5 papers · 1 filter

physics.space-ph20228 cited

An improved technique for measuring plasma density to high frequencies on the Parker Solar Probe

Forrest Mozer, Stuart Bale, Paul Kellogg +3

The correlation between the plasma density measured in space and the surface potential of an electrically conducting satellite body with biased electric field detectors has been re…

physics.space-ph201981 cited

Enhanced Energy Transfer Rate in Solar Wind Turbulence Observed near the Sun from Parker Solar Probe

Riddhi Bandyopadhyay, M. L. Goldstein, B. A. Maruca +25

Direct evidence of an inertial-range turbulent energy cascade has been provided by spacecraft observations in heliospheric plasmas. In the solar wind, the average value of the deri…

physics.space-ph201949 cited

Clustering of Intermittent Magnetic and Flow Structures near Parker Solar Probe's First Perihelion -- A Partial-Variance-of-Increments Analysis

Rohit Chhiber, M. Goldstein, B. Maruca +23

During the Parker Solar Probe's (PSP) first perihelion pass, the spacecraft reached within a heliocentric distance of \(\sim 37~R_\odot\) and observed numerous magnetic and flow st…

physics.space-ph201923 cited

Predicting the Solar Wind at Parker Solar Probe Using an Empirically Driven MHD Model

T. K. Kim, N. V. Pogorelov, C. N. Arge +20

Since the launch on 2018/08/12, Parker Solar Probe (PSP) has completed its first and second orbits around the Sun, having reached down to 35.7 solar radii at each perihelion. In an…

physics.space-ph201966 cited

Turbulence Transport Modeling and First Orbit Parker Solar Probe (PSP) Observations

Laxman Adhikari, Gary P. Zank, Lingling Zhao +8

Parker Solar Probe (PSP) achieved its first orbit perihelion on November 6, 2018, reaching a heliocentric distance of about 0.165 au (35.55 R). Here, we study the evolution…