Colby Haggerty
- ORCiD
- https://orcid.org/0000-0002-2160-7288
- OpenAlex ID
- https://openalex.org/A5075359095 (API record)
Associated Concepts [?]
- Physics
- Quantum mechanics
- Nuclear physics
- Plasma
- Magnetic field
- Mechanics
- Thermodynamics
- Magnetic reconnection
- Computational physics
- Classical mechanics
- Electron
- Astrophysics
- Astronomy
- Mathematics
- Geography
- Meteorology
- Engineering
- Geology
- Chemistry
- Solar wind
- Organic chemistry
- Kinetic energy
- Instability
- Biology
- Ion
Authored Works
sorted by decreasing year, and then by display-name
- Understanding the Kinetic Physics of Particle Energization at Quasiperpendicular Collisionless Shocks Using the Field-Particle Correlation Technique
- The Reduction of the Outflow Speed in Guide-Field Magnetic Reconnection of High-beta Plasmas
- The Kinetic Role of Shear Flow on Magnetic Reconnection
- Role of Turbulence and Reconnection in Dissipation in Plasmas
- On the short-scale spatial variability of electron inflows in electron-only magnetic reconnection in the turbulent magnetosheath observed by MMS
- Exploring Energy Transfer from the Bell Instability using Simulations and Field-Particle Correlation Analysis
- Fully Exploiting 3D-3V Phase Space to Understand Plasma Heating and Particle Acceleration in Collisionless Shocks
- The Modifications of Collisionless Plasma Shock Hydrodynamics by Non-Thermal Particles in Kinetic Simulations
- Diffusion Region of Reconnection in the Presence of a Shear Flow
- The Occurrence and Role of Magnetic Reconnection in Turbulent Plasmas
- Statistics of Magnetic Reconnection in Turbulence and its Effect on Plasma Heating
- PlasmaPy: A Community Python Package for Plasma Physics
- In situ study of the pathways of energy dissipation in turbulent reconnection in the Earth's magnetosheath using MMS data
- Electron scale magnetic reconnection in the turbulent magnetosheath: Kinetic PIC simulation study
- Partition of Heating During Magnetic Reconnection: Role of Exhaust Velocity
- Magnetic Reconnection during Turbulence: Statistics of X-Points and Heating
- MMS observations of guide field reconnection at the interface between colliding reconnection jets inside flux rope-like structures at the magnetopause
- Electron scale magnetic reconnection in the turbulent magnetosheath: Kinetic PIC simulation study
- <p>Energy Dissipation and Dynamics in Large Guide Field Turbulence Driven Reconnection at the Magnetopause
- Super-Alfvenic Propagation and Damping of Reconnection Onset Signatures
- Statistics of Magnetic Reconnection X-Lines in Kinetic Turbulence
- MMS observations of large guide field symmetric reconnection between colliding reconnection jets at the center of a magnetic flux rope at the magnetopause
- Link between von-Karman energy decay and reconnection heating in turbulent plasmas
- Kinetic physics in exhausts formed by guide field reconnection within the magnetosheath, as observed by MMS
- Ion Larmor Radius Effects and the Larmor Electric Field Near the X-line During Magnetopause Reconnection
- Electron Heating near the Reconnection X-line Versus in the Downstream Exhaust
- The Coupling of Ion and Electron Heating During Magnetic Reconnection and the Role of Parallel Electric Fields
- Reduction of Ion Heating in Magnetic Reconnection by Large Scale Effective Potentials
- Propagation and Damping of Kinetic Alfven Waves Generated During Magnetic Reconnection
- Plasma Heating During Magnetic Reconnection: Implications for Turbulent Dissipation
- The Coupling of Ion and Electron Heating During Magnetic Reconnection and the Role of Parallel Electric Fields
- Scaling of Ion Heating During Magnetic Reconnection: Kinetic PIC Simulations
- Electron Heating During Magnetic Reconnection: The Interplay of Parallel Electric Fields and Fermi-Bounce Acceleration
- Scaling of Electron Heating During Magnetic Reconnection
Linked Co-Authors
- Alexandros Chasapis
- B. L. Giles
- C. T. Russell
- D. J. Gershman
- G. G. Howes
- J. E. Stawarz
- J. F. Drake
- J. L. Burch
- James Juno
- M. A. Shay
- M. Øieroset
- N. A. Murphy
- P. A. Cassak
- Prayash Sharma Pyakurel
- R. B. Torbert
- R. Bandyopadhyay
- R. J. Strangeway
- Subash Adhikari
- T. D. Phan
- W. H. Matthaeus
Linked Collaborating Institutions
- ASML Holdings, Netherlands
- Catholic University, Department of Physics
- Ecole Polytechnique, LPP, Laboratoire de Physique des Plasmas
- Goddard Space Flight Center, Astrophysics Division
- Imperial College, Department of Physics
- Imperial College, London
- JAXA, Institute of Space and Astronautical Science
- Johns Hopkins University, Maryland
- KTH, Royal Institute of Technology, Sweden
- Los Alamos National Laboratory, New Mexico
- Mahidol University, Thailand
- NASA Goddard Space Flight Center, Maryland
- Princeton University, New Jersey
- Southwest Research Institute, Texas
- University of Alaska, Fairbanks, Geophysical Institute
- University of Arizona, Department of Planetary Sciences
- University of Calabria, Italy
- University of California, Berkeley
- University of California, Berkeley, Space Sciences Laboratory
- University of California, Los Angeles
- University of California, Los Angeles, Institute of Geophysics and Planetary Physics
- University of Chicago
- University of Chicago, Department of Astronomy and Astrophysics
- University of Colorado, Boulder
- University of Colorado, Boulder, Laboratory for Atmospheric and Space Physics
- University of Delaware
- University of Delaware, Department of Physics and Astronomy
- University of Hawaii, Manoa
- University of Hawaii, Manoa, Institute for Astronomy
- University of Iowa
- University of Iowa, Department of Physics and Astronomy
- University of Maryland, College Park
- University of Maryland, Department of Astronomy
- University of Michigan, Department of Atmospheric Oceanic and Space Sciences
- University of New Hampshire
- University of Sheffield, UK
- Victoria University of Wellington, New Zealand
- West Virginia University
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