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1. Correlation of Coronal Mass Ejection Shock Temperature with Solar Energetic Particle Intensity

2. Parker Solar Probe: Four Years of Discoveries at Solar Cycle Minimum

3. The essential role of multi-point measurements in investigations of turbulence, three-dimensional structure, and dynamics: the solar wind beyond single scale and the Taylor Hypothesis

4. Sub-Alfvenic Solar Wind observed by PSP: Characterization of Turbulence, Anisotropy, Intermittency, and Switchback

5. Magnetic Field Line Random Walk and Solar Energetic Particle Path Lengths: Stochastic Theory and PSP/ISoIS Observation

6. Shear-Driven Transition to Isotropically Turbulent Solar Wind Outside the Alfven Critical Zone

7. Measures of Scale Dependent Alfv\'enicity in the First PSP Solar Encounter

8. Observations of heating along intermittent structures in the inner heliosphere from PSP data

9. Observations of Energetic-Particle Population Enhancements along Intermittent Structures near the Sun from Parker Solar Probe

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

11. [Plasma 2020 Decadal] The essential role of multi-point measurements in turbulence investigations: the solar wind beyond single scale and beyond the Taylor Hypothesis

12. Finite Dissipation in Anisotropic Magnetohydrodynamic Turbulence

13. Solar Wind Turbulence Studies using MMS Fast Plasma Investigation Data

14. MMS Observations of Beta-Dependent Constraints on Ion Temperature-Anisotropy in Earth's Magnetosheath

15. Incompressive Energy Transfer in the Earth's Magnetosheath: Magnetospheric Multiscale Observations

17. Relaxation of the turbulent magnetosheath

19. Parker Solar Probe: Four Years of Discoveries at Solar Cycle Minimum

21. Sub-Alfvénic Solar Wind Observed by the Parker Solar Probe: Characterization of Turbulence, Anisotropy, Intermittency, and Switchback

23. Magnetic field line random walk and solar energetic particle path lengths

24. On the validity of the Taylor Hypothesis in the inner heliosphere as observed by the Parker Solar Probe

25. Observations of Energetic-particle Population Enhancements along Intermittent Structures near the Sun from the Parker Solar Probe

26. The interpretation of data from the Parker Solar Probe mission: shear-driven transition to an isotropically turbulent solar wind

27. Shear-driven Transition to Isotropically Turbulent Solar Wind Outside the Alfvén Critical Zone

28. Observations of Heating along Intermittent Structures in the Inner Heliosphere from PSP Data

29. Observations of Energetic-particle Population Enhancements along Intermittent Structures near the Sun from the Parker Solar Probe

30. Measures of Scale-dependent Alfvénicity in the First PSP Solar Encounter

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

32. Intermittent heating in the inner Heliosphere: PSP observations

33. Waiting time (distance) distributions of magnetic field and velocity PVI events during the first Parker Solar Probe encounter

34. On the validity of the Taylor Hypothesis in the inner heliosphere as observed by the Parker solar probe

35. Alfvenicity in PSP observations: comparing different measures

36. Flocculation, switchbacks, and loss of Alfvenicity: Indicators of shear-driven turbulence in the young solar wind?

37. MHD-Scale Energy Transfer in the Inner Heliosphere from PSP observations

38. Turbulence Studies using MMS: data issues and physics

40. Higher‐Order Turbulence Statistics in the Earth's Magnetosheath and the Solar Wind Using Magnetospheric Multiscale Observations

41. Incompressive Energy Transfer in the Earth’s Magnetosheath: Magnetospheric Multiscale Observations

42. Solar Wind Turbulence Studies Using MMS Fast Plasma Investigation Data

43. MMS Observations of Beta-dependent Constraints on Ion Temperature Anisotropy in Earth’s Magnetosheath

45. Charged Particle Diffusion in Isotropic Random Magnetic Fields

48. Kinetic Range Spectral Features of Cross Helicity Using the Magnetospheric Multiscale Spacecraft.

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