World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
30
Citations
5004
World Ranking
3372
National Ranking
244

Overview

V. Riccardo is affiliated with the European Atomic Energy Community in the United Kingdom. The scientific work primarily focuses on research related to nuclear and high energy physics within the broader fields of physics and astronomy, materials science, and engineering.

The main topics of their research include:

  • Magnetic confinement fusion research
  • Fusion materials and technologies
  • Superconducting materials and applications
  • Laser-plasma interactions and diagnostics
  • Plasma diagnostics and applications
  • Geomagnetism and paleomagnetism studies

Recent publications by V. Riccardo demonstrate engagement with experimental and theoretical fusion science, exploring plasma behavior and related technologies. Notable papers include:

  • "Overview of the SPARC physics basis towards the exploration of burning-plasma regimes in high-field, compact tokamaks," 2022, Nuclear Fusion
  • "Reduction of asymmetric wall force in JET and ITER disruptions including runaway electrons," 2020, Physics of Plasmas
  • "Overview of the early campaign diagnostics for the SPARC tokamak (invited)," 2024, Review of Scientific Instruments
  • "Development of SPARC plasma disruption database through electromagnetic predictive MAXFEA modelling," 2024, Fusion Engineering and Design

These contributions cover topics such as plasma disruptions, diagnostics for fusion devices, and predictive modeling relevant to tokamak operation. The publication venues confirm engagement with leading journals specializing in fusion energy and plasma physics.

V. Riccardo frequently collaborates with other researchers in this field. Some of the common co-authors include:

  • A. J. Creely
  • M. Greenwald
  • C. Chrobak
  • R. Granetz
  • N. T. Howard

Their body of work is also associated with venues known for publishing fusion and plasma-related studies:

  • Nuclear Fusion
  • Physics of Plasmas
  • Review of Scientific Instruments
  • Fusion Engineering and Design

In terms of disciplinary subfields, their research spans:

  • Nuclear and High Energy Physics
  • Materials Chemistry
  • Biomedical Engineering
  • Electrical and Electronic Engineering
  • Molecular Biology

This interdisciplinary approach includes contributions crossing physical sciences and engineering domains, with a strong focus on understanding and improving fusion energy technologies and advanced materials associated with plasma environments.

Best Publications

  • Chapter 3: MHD stability, operational limits and disruptions

    T. C. Hender;J. C. Wesley;J. Bialek;A. Bondeson

  • JET ITER-like wall - overview and experimental programme

    G. F. Matthews;M. Beurskens;S. Brezinsek;M. Groth

  • Disruptions in ITER and strategies for their control and mitigation

    M. Lehnen;K. Aleynikova;P. B. Aleynikov;D. J. Campbell

  • Survey of disruption causes at JET

    P.C. de Vries;M.F. Johnson;B. Alper;P. Buratti

  • Disruption heat loads on the JET MkIIGB divertor

    V Riccardo;P Andrew;L C Ingesson;G Maddaluno

  • Impact and mitigation of disruptions with the ITER-like wall in JET

    M. Lehnen;M. Lehnen;G. Arnoux;S. Brezinsek;J. Flanagan

  • Analysis of JET halo currents

    V Riccardo;T C Hender;P J Lomas;B Alper

  • Behaviour of disruption generated runaways in JET

    R.D. Gill;B. Alper;M. de Baar;T.C. Hender

  • Disruptions and disruption mitigation

    V Riccardo;Jet Efda contributors

  • JET disruption studies in support of ITER

    V Riccardo;G Arnoux;P Cahyna;T C Hender

  • The impact of the ITER-like wall at JET on disruptions

    P. C. de Vries;G. Arnoux;A. Huber;J. Flanagan

  • Power deposition onto plasma facing components in poloidal divertor tokamaks during type-I ELMs and disruptions

    T. Eich;A. Herrmann;G. Pautasso;P. Andrew

  • Timescale and magnitude of plasma thermal energy loss before and during disruptions in JET

    V. Riccardo;A. Loarte

  • Runaway generation during disruptions in JET and TEXTOR

    M. Lehnen;S.S. Abdullaev;G. Arnoux;S.A. Bozhenkov

  • Forces between plasma, vessel and TF coils during AVDEs at JET

    V. Riccardo;P. Noll;S.P. Walker

  • Development of divertor tungsten coatings for the JET ITER-like wall

    G. F. Matthews;P. Coad;H. Greuner;M. Hill

  • Modelling of Power Deposition on the JET ITER-Like Wall using the Code PFCFLUX

    M. Firdaouss;V. Riccardo;V. Martin;G. Arnoux

  • Plasma current asymmetries during disruptions in JET

    S.N. Gerasimov;T.C. Hender;J. Morris;V. Riccardo

  • Localized bulk electron heating with ICRF mode conversion in the JET tokamak

    M.J. Mantsinen;M.-L. Mayoral;D. Van Eester;B. Alper

  • Magnetic energy flows during the current quench and termination of disruptions with runaway current plateau formation in JET and implications for ITER

    A. Loarte;V. Riccardo;J.R. Martin-Solís;J. Paley

  • Current status of the JET ITER-like Wall Project

    G. F. Matthews;P. Edwards;H. Greuner;A. Loving

  • Design challenges and analysis of the ITER core LIDAR Thomson scattering system

    M. J. Walsh;M. Beurskens;P. G. Carolan;M. Gilbert

  • ELM-averaged power exhaust on JET

    W. Fundamenski;R.A. Pitts;G.F. Matthews;V. Riccardo

  • Reconstruction of power deposition profiles using JET MkIIGB thermocouple data for ELMy H-mode plasmas

    V Riccardo;W Fundamenski;G F Matthews

  • Inter-machine comparison of the termination phase and energy conversion in tokamak disruptions with runaway current plateau formation and implications for ITER

    J.R. Martín-Solís;A. Loarte;E.M. Hollmann;B. Esposito

  • Modelling magnetic forces during asymmetric vertical displacement events in JET

    V Riccardo;S Walker;P Noll

  • Heat loads on plasma facing components during disruptions on JET

    G. Arnoux;A. Loarte;V. Riccardo;W. Fundamenski

  • The error field correction coils on the JET machine

    I. Barlow;M. Bigi;J. Bird;G. Bonizzoni

Frequent Co-Authors

Jet-Efda Contributors
Jet-Efda Contributors International Atomic Energy Agency
S. Brezinsek
S. Brezinsek Forschungszentrum Jülich
H. Maier
H. Maier University of Hannover
Raffaele Albanese
Raffaele Albanese University of Naples Federico II
A. Kallenbach
A. Kallenbach Max Planck Society
R. Neu
R. Neu Max Planck Institute for Plasma Physics
Jochen Linke
Jochen Linke Forschungszentrum Jülich
Gerald Pintsuk
Gerald Pintsuk Forschungszentrum Jülich
Fabio Villone
Fabio Villone University of Naples Federico II

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Exploring related online degrees can open new doors for students interested in Mechanical and Aerospace Engineering. For example, those looking to combine engineering with human services might consider the easiest degree in counseling. This path offers a unique way to support individuals while leveraging problem-solving skills developed in engineering.

Students seeking accelerated education options can benefit from programs like the accelerated ABA program. These programs help learners achieve certification quickly, ideal for those balancing a technical career with interests in behavioral analysis.

For those inclined toward communication sciences, understanding is it hard to get into SLP grad school is essential. Speech-Language Pathology offers a vital service with steady demand, and knowing admission challenges can help students prepare effectively.

Additionally, prospective students can research speech-language pathology graduate programs by state to find accessible options that fit their geographic preferences and career goals. Combining engineering with these allied fields can enrich a professional profile and expand employment opportunities.

Best Scientists Citing V. Riccardo

Trending Scientists

Recently Published Articles