T. Dudok de Wit
- ORCiD
- https://orcid.org/0000-0002-4401-0943
- OpenAlex ID
- https://openalex.org/A5015856306 (API record)
Associated Concepts [?]
- Physics
- Quantum mechanics
- Nuclear physics
- Plasma
- Magnetic field
- Astronomy
- Solar wind
- Geography
- Geology
- Engineering
- Astrophysics
- Computational physics
- Meteorology
- Optics
- Computer science
- Biology
- Thermodynamics
- Mathematics
- Mechanics
- Aerospace engineering
- Chemistry
- Coronal mass ejection
- Geophysics
- Materials science
- Organic chemistry
Authored Works
sorted by decreasing year, and then by display-name
- Switchbacks Boundaries Observed by Parker Solar Probe: Statistical Analysis to Reveal their Dynamical Evolution in the Solar Wind
- Reconstruction and Analysis of Whistler Waves Properties with Parker Solar Probe and Solar Orbiter
- Inhomogeneous Distribution of High-Amplitude Kinetic Alfvén Waves in the Near-Sun Solar Wind
- A Comprehensive Catalogue of Switchbacks : Evidence for a Generation in the Lower Corona
- To Touch the Sun: Parker Solar Probe and the Alfven Critical Point
- Switchback systematic orientation near Sun and implications for solar interchange reconnection preferential locations
- Survey of whistlers waves parameters in the pristine solar wind from the first PSP orbit: wave amplitude, polarization, and occurrence rates
- Studying the evolution and propagation of a prominent solar wind structure observed by PSP on June 13, 2020
- Solar Noise in 40-year long Total Solar Irradiance Composite Time Series
- Short Duration Electrostatic Waves with Frequency Shifts in the Solar Wind Sunward of 1/3 AU
- Prevalence of Magnetic Reconnection in the near-Sun Heliospheric Current Sheet
- Parker Solar Probe Observations of the Presence and Absence of Magnetic Reconnection in the Near-Sun Solar Wind Current Sheets
- Origins of low turbulence, quiescent magnetic field regions in the near-sun solar wind and their peculiar magnetic and anisotropic ion behavior.
- On the validity of the Taylor Hypothesis in the inner heliosphere as observed by the Parker Solar Probe
- On the kinetics of inter-penetration of plasmas on the boundaries of coronal holes
- New insight into the nature and origin of switchbacks thanks to a comprehensive catalogue of events
- Magnetic Signatures associated with Dust Impacts on Parker Solar Probe
- Langumir/Slow extraordinary mode magnetic signatures with Parker Solar Probe
- Four, Three, Two, One... Whats Up (or Down) with the TSI Instruments?
- Whistler Waves and the Halo Electron Anisotropies in the Inner Heliosphere: Helios Observations
- Waiting time (distance) distributions of magnetic field and velocity PVI events during the first Parker Solar Probe encounter
- Type III Radio Bursts Observed in the Inner Heliosphere
- Turbulence Transport Modeling and PSP Observations
- The role of Alfvén wave dynamics in the large scale properties of the solar wind: comparing 3D MHD simulation and PSP data
- The magnetic structure and electrodynamics of the emerging solar wind
- The Radial Dependence of Proton-scale Magnetic Spectral Break During PSP Encounter 2
- The RPW/Search Coil Magnetometer onboard Solar Orbiter
- Switchbacks: A Statistical Investigation of Their Properties
- Switchbacks in the near-Sun magnetic field: long-range correlations and impact on the turbulence cascade
- Sunward Strahl in Rapid Magnetic Field Reversals: Solar Connectivity and Magnetic Topology During Switchbacks in Parker Solar Probe's Early Encounters
- Stochastic heating of the solar wind becomes increasingly significant close to the Alfven critical point
- Statistics of the Magnetic Field Variability Observed by the Parker Solar Probe FIELDS Magnetometers
- Statistics of Energetic Particles in the first Parker Solar Probe Orbit: Correlations and Association with Magnetic Structures
- Solar wind streams and corotating interaction regions observed by Parker Solar Probe with corresponding observations at one AU
- Sharp Alfvenic Impulses in the Near-Sun Solar Wind: Properties and Possible Origins
- Radial Evolution of MHD-Scale Solar Wind Turbulence from 35 Rs to 1 AU
- Plasma waves near the electron cyclotron frequency in the near-Sun solar wind: implications for inner heliospheric turbulence and the structure of the solar wind
- Parker Solar Probe observations of the first Venus flyby
- Parker Solar Probe observations of proton beams simultaneous with ion-cyclotron waves
- Parker Solar Probe approaches the Alfvén Point
- Parker Solar Probe Observations of the Release of Density Blobs and Flux Ropes at the Heliospheric Current Sheet
- Parker Solar Probe Observations of Magnetic Reconnection Exhausts during Encounter 1
- On the validity of the Taylor Hypothesis in the inner heliosphere as observed by the Parker solar probe.
- Observed Properties of Solar Wind Jets inside 0.25 AU
- Observations of Non-Thermal Structure in the Proton Velocity Distribution Function Using Proton Beams Below 0.3 AU from Parker Solar Probe and at 1 AU with Wind
- Observation of the Heating and Acceleration of the Solar Wind by MHD Waves
- Numerical simulations of the evolution of magnetic field kinks in the solar wind
- Multi-species modelling of the forming solar wind from the upper chromosphere to Parker Solar Probe
- Measurement of Electron Temperature Anisotropy to within 35 Rs
- Magnetic connectivity of the ecliptic plane within 0.5 AU : PFSS modelling of the early PSP encounters
- MHD-Scale Energy Transfer in the Inner Heliosphere from PSP observations
- MHD mode decomposition in the inner-heliosphere from the Parker Solar Probe
- Localized Magnetic Field Structures and Their Boundaries in the Near-Sun Solar Wind from Parker Solar Probe Measurements
- Large scale 1/f magnetic field spectrum in the solar wind close to the Sun: comparison between 0.15 and 0.3AU
- Large Scale Structure of the Solar Wind, Poynting Flux, and Ion Energy Flow between 35 and 130 Solar Radii.
- Kinetic physics everywhere in the inner heliosphere: Evidence from the FIELDS instrument on Parker Solar Probe
- Ion temperature anisotropy measurements using the Solar Probe Cup on Parker Solar Probe
- Intermittent heating in the inner Heliosphere: PSP observations
- Improved AWSoM Modeling of the First Two PSP Encounters
- Impacts of small coronal transients at Parker Solar Probe at times of density increases and burst of magnetic switchbacks
- Identification of Small Scale Structures from PSP Observations
- Helium abundance and non-equilibrium in the inner heliosphere
- Flocculation, switchbacks, and loss of Alfvenicity: Indicators of shear-driven turbulence in the young solar wind?
- First In-situ Measurements of Electron Density and Temperature from Quasi-Thermal Noise Spectroscopy with Parker Solar Probe/FIELDS
- Electron-scale Magnetic Holes as a Possible Universal Signature of Energy Dissipation in Space Plasmas
- Early Evolution and Propagation of a Coronal mass Ejections within 55 solar radii as seen by Parker Solar Probe
- Determining Directionality of Interplanetary Dust Particles Near the Sun
- Density Fluctuations in the Solar Wind Deduced from Radio Measurements by Parker Solar Probe
- Comparison of Parker Solar Probe Observations during First Perihelion with Global Magnetohydrodynamic Model Results
- Characterizing thermal expansion profile of solar wind streams with Parker Solar Probe SWEAP and FIELDS
- Characteristics and Evolution of Strahl Electrons in the Inner Heliosphere
- Analysis of the Internal Structure of the Streamer Blow Out Observed the Parker Solar Probe during the First Solar Encounter
- Alpha Particle Content in the Solar Wind as Observed by the SPAN-Ion Instrument on Parker Solar Probe
- Alfvenicity in PSP observations: comparing different measures
- Alfvenic slow solar wind and proton temperature anisotropy in inner heliosphere by PSP observations
- A simple wave particle correlator for the Parker Solar Probe Mission - Invited Paper 491142
- A correlation Study of Coronal EUV Brightenings and Radio Emission Observed by Parker Solar Probe
- A Preliminary Analysis Places a Portion of the Dust Grains Detected by PSP on Prograde, Low-eccentricity Orbits in the Ecliptic
- "Observing Dissipation Scale Dynamics of the Inner Heliosphere with Merged Search Coil and Fluxgate Magnetometer Measurements"
- Whistler waves in the inner heliosphere from 0.3 to 1 AU
- The New "Community-Consensus TSI Composite" for Solar and Climate Researchers
- First results from the SCM search-coil magnetometer onboard Parker Solar Probe
- First results from the FIELDS instrument suite on Parker Solar Probe
- ICARUS Mission, Next Step of Coronal Exploration after Solar Orbiter and Solar Probe Plus
- A Merged Dataset for Solar Probe Plus FIELDS Magnetometers
- The making of a new solar spectral irradiance composite - overview of the results from the SOLID Project
- Numerical Techniques for Removing Instrumental Noise in the Solar Probe Plus/FIELDS Search Coil Magnetometer
- Synoptic radio observations as proxies for upper atmospheric modelling
- Solar spectral irradiance datasets: analysis and comparison with proxies
- New insights on short-term solar irradiance forecast for space weather applications
- Making of solar irradiance composite records out of multiple observations (Invited)
- Evolution of the solar luminosity during solar cycle 23
- The role of energy exchange between the eddies and the mean flow for the long-term modulation of the solar activity
- Is the Source of Chorus Emissions Located at the Local Geomagnetic Field Minimum?
- Do Flares Contribute to Total Solar Irradiance Variability ?
- Remote sensing of plasma density fluctuations and wave source characteristics by means of chorus waves multi point phase correlation analysis
- Direct in Situ Measurements of Current Density Variations in the Ionosphere by Using the Current Density Probe Rogowski Coil Onboard Sych 1M Satellite
- Polarization Properties of High Frequency Waves in Solar Wind and Electron Foreshock Regions: WIND Observations and Interpretation
- Morphology of Langmuir wave active sites in the Earth's foreshock observed from the four points CLUSTER constellation : analysis of a case event at small separation
- CLUSTER Observations of Langmuir Wave Decay in the Terrestrial Foreshock
- Filamentation of Langmuir waves and the role of absolute decay instability in the electron foreshock: comparison of CLUSTER observations and theory
- Quiet Sun coronal heating: analyzing large scale magnetic structures driven by different small-scale uniform sources.
- A Correlation Analysis of Plasma Wave Dispersion Relation From Four-point CLUSTER Measurements
Linked Co-Authors
- A. Koval
- A. P. Rouillard
- A. Pusack
- A. V. Usmanov
- A. W. Case
- Alexander M. Hegedus
- Alexandros Chasapis
- Ali Rahmati
- B. L. Alterman
- B. Lavraud
- Bennett A. Maruca
- C. Froment
- C. M. S. Cohen
- C. S. Salem
- Carolus J. Schrijver
- D. Malaspina
- D. Ruffolo
- Emily Lichko
- F. S. Mozer
- G. C. Ho
- G. P. Zank
- Gaël Kermarrec
- I. Ermolli
- J. C. Kasper
- J. F. Drake
- J. G. Luhmann
- J. G. Mitchell
- J. L. Verniero
- J. Lean
- J. P. Eastwood
- J. S. Halekas
- J. T. Niehof
- J. T. Steinberg
- J. W. Bonnell
- Jean-Philippe Montillet
- Jia Huang
- Juan Gómez
- K. E. Korreck
- K. G. Klein
- K. Goetz
- K. W. Paulson
- L. Claire Gasque
- Lisa Upton
- Lucas Colomban
- M. A. Shay
- M. Haberreiter
- M. Kretzschmar
- M. L. Goldstein
- M. Moncuquet
- M. Pulupa
- M. Øieroset
- N. E. Raouafi
- N. Fargette
- Nina Bizien
- Oleksiy Agapitov
- Orlando Romeo
- P. Louarn
- Prayash Sharma Pyakurel
- R. A. Qudsi
- R. Bandyopadhyay
- R. Chhiber
- R. J. MacDowall
- R. Livi
- Rui Pinto
- S. D. Bale
- S. T. Badman
- T. D. Phan
- T. N. Parashar
- Tatiana Niembro
- Teresa Nieves‐Chinchilla
- V. Krasnoselskikh
- Victor Réville
- W. H. Matthaeus
- W. Schmutz
- А. V. Artemyev
Linked Collaborating Institutions
- Aberystwyth University, UK
- Academy of Sciences of the Czech Republic, Institute of Physics
- Astronomical Observatory of Rome
- Brazilian National Institute for Space Research
- CETP, Observatoire de Saint Maur
- California Institute of Technology
- Catholic University, Department of Physics
- Catholic University, Institute for Astrophysics and Computational Sciences
- Catholic University, Washington DC
- Centre National d'Etudes Spatiales, Toulouse
- Centre National de la Recherche Scientifique, France
- Charles University, Department of Physics
- Dartmouth College, New Hampshire
- E.O. Hulburt Center for Space Research, NRL
- Ecole Polytechnique, LPP, Laboratoire de Physique des Plasmas
- Eidgenossische Technische Hochschule, Zurich, Switzerland
- George Mason University, Virginia
- Goddard Space Flight Center, Astrophysics Division
- Imperial College, Department of Physics
- Imperial College, London
- Italian Space Agency
- Jet Propulsion Laboratory
- Johns Hopkins University, Applied Physics Laboratory
- Johns Hopkins University, Maryland
- KTH, Royal Institute of Technology, Sweden
- Laboratoire de Physique et de Chimie de l'Environnement et de l'Espace, Orleans
- Leibniz University, Hannover, Germany
- Lockheed Martin, Palo Alto
- Los Alamos National Laboratory, New Mexico
- Mahidol University, Thailand
- NASA Goddard Space Flight Center, Maryland
- NASU, Space Research Institute, Lviv
- Nagaoka University of Technology, Japan
- National Academy of Sciences of Ukraine
- National Autonomous University of Mexico
- National Center for Atmospheric Research, High Altitude Observatory
- Observatoire de Paris, France
- Peking University, China
- Predictive Science Inc., California
- Princeton University, Department of Astrophysical Sciences
- Princeton University, New Jersey
- Queen Mary University, School of Physics and Astronomy
- Queen Mary University, UK
- RAS, Institute of Physics of the Earth
- RAS, Pushkov Institute of Terrestrial Magnetism, Ionosphere and Radiowave Propagation, Troitsk
- RAS, Space Research Institute, Moscow
- Royal Holloway University of London
- Science Systems and Applications Inc., Maryland
- Shevchenko National University, Department of Physics and Astronomy
- Smithsonian Astrophysical Observatory
- Southwest Research Institute, Boulder
- Southwest Research Institute, Texas
- Stanford University, Department of Physics
- U.S. Department of the Navy, Naval Research Laboratory, Washington DC
- U.S. Environmental Protection Agency
- Universite d'Orleans, France
- Universities Space Research Association
- University College London, Mullard Space Science Laboratory
- University of Alabama, Huntsville
- University of Alabama, Huntsville, Department of Physics
- University of Arizona
- University of Arizona, Department of Planetary Sciences
- University of Calabria, Italy
- University of California, Berkeley
- University of California, Berkeley, Department of Astronomy
- University of California, Berkeley, Department of Physics
- 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 Cambridge, Department of Applied Mathematics and Theoretical Physics
- 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 Glasgow, UK
- University of Iowa
- University of Iowa, Department of Physics and Astronomy
- University of Maryland, Baltimore County
- University of Maryland, College Park
- University of Michigan
- University of Michigan, Department of Atmospheric Oceanic and Space Sciences
- University of Minnesota, School of Physics and Astronomy
- University of Minnesota, Twin Cities
- University of New Hampshire
- University of Oslo, Institute of Theoretical Astrophysics
- University of Oslo, Norway
- University of Oxford, UK
- University of Sheffield, Department of Automatic Control and Systems Engineering
- University of Sheffield, UK
- University of Texas, Austin
- University of Wisconsin, Madison
- Victoria University of Wellington, New Zealand
- West Virginia University
- World Radiation Center, Davos, Switzerland
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