World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
38
Citations
6805
World Ranking
4865
National Ranking
184

Overview

Giovanni Ghione is affiliated with the Polytechnic University of Turin in Italy and specializes in engineering, with a particular focus on electrical and electronic engineering. Their research encompasses various subfields including atomic and molecular physics, optics, aerospace engineering, materials chemistry, and biomedical engineering.

The scientist's work addresses multiple topics within the realm of photonics and semiconductor technology. The main topics covered include:

  • Photonic and Optical Devices
  • Advanced Semiconductor Detectors and Materials
  • Infrared Target Detection Methodologies
  • Advanced Photonic Communication Systems
  • Optical Network Technologies
  • Microwave Engineering and Waveguides
  • Radio Frequency Integrated Circuit Design

Giovanni Ghione has contributed to several papers published in respected venues. Notable recent papers include:

  • "Analysis of Carrier Transport in Tunnel-Junction Vertical-Cavity Surface-Emitting Lasers by a Coupled Nonequilibrium Green's Function-Drift-Diffusion Approach" (2020), Physical Review Applied
  • "Plasmonic-organic hybrid electro/optic Mach-Zehnder modulators: from waveguide to multiphysics modal-FDTD modeling" (2020), Optics Express
  • "Constraints and performance trade-offs in Auger-suppressed HgCdTe focal plane arrays" (2020), Applied Optics
  • "Generalized Symmetrical 3 dB Power Dividers With Complex Termination Impedances" (2020), IEEE Access
  • "Quantum Efficiency and Crosstalk in Subwavelength HgCdTe Dual Band Infrared Detectors" (2021), IEEE Journal of Selected Topics in Quantum Electronics

Their coauthors frequently include:

  • R Todi
  • Joachim N. Burghartz
  • Francesco Bertazzi
  • Michele Goano
  • K. Ishimaru

Giovanni Ghione's work has been published primarily in venues that focus on electronics and photonics, including:

  • IEEE Transactions on Electron Devices
  • IEEE Electron Devices Magazine
  • Physical Review Applied
  • Applied Optics
  • IEEE Journal of Selected Topics in Quantum Electronics

Best Publications

  • Monte Carlo simulation of electron transport in the III-nitride wurtzite phase materials system: binaries and ternaries

    M. Farahmand;C. Garetto;E. Bellotti;K.F. Brennan

  • Coplanar Waveguides for MMIC Applications: Effect of Upper Shielding, Conductor Backing, Finite-Extent Ground Planes, and Line-to-Line Coupling

    G. Ghione;C.U. Naldi

  • Analytical formulas for coplanar lines in hybrid and monolithic MICs

    Giovanni Ghione;C. Naldi

  • Semiconductor Devices for High-Speed Optoelectronics

    Giovanni Ghione

  • Noise in semiconductor devices

    Fabrizio Bonani;Giovanni Ghione

  • 3–3.6-GHz Wideband GaN Doherty Power Amplifier Exploiting Output Compensation Stages

    Jorge Moreno Rubio;Jie Fang;Vittorio Camarchia;R. Quaglia

  • A CAD-oriented analytical model for the losses of general asymmetric coplanar lines in hybrid and monolithic MICs

    G. Ghione

  • An efficient approach to noise analysis through multidimensional physics-based models

    F. Bonani;G. Ghione;M.R. Pinto;R.K. Smith

  • Parameters of coplanar waveguides with lower ground plane

    Giovanni Ghione;C. Naldi

  • On the application of the Kirchhoff transformation to the steady-state thermal analysis of semiconductor devices with temperature-dependent and piecewise inhomogeneous thermal conductivity

    Fabrizio Bonani;Giovanni Ghione

  • Physics-based modeling and experimental implications of trap-assisted tunneling in InGaN/GaN light-emitting diodes

    Marco Mandurrino;Giovanni Verzellesi;Michele Goano;Marco Vallone

  • Noise in Semiconductor Devices : Modeling and Simulation

    Fabrizio Bonani;Giovanni Ghione

  • Generation–recombination noise modelling in semiconductor devices through population or approximate equivalent current density fluctuations

    Fabrizio Bonani;Giovanni Ghione

  • A TCAD approach to the physics-based modeling of frequency conversion and noise in semiconductor devices under large-signal forced operation

    F. Bonani;S.D. Guerrieri;G. Ghione;M. Pirola

  • Microwave modeling and characterization of thick coplanar waveguides on oxide-coated lithium niobate substrates for electrooptical applications

    G. Ghione;M. Goano;G.L. Madonna;G. Omegna

  • Physics-based electron device modelling and computer-aided MMIC design

    F. Filicori;G. Ghione;C.U. Naldi

  • Accelerated Publication: Ag nanoparticle-based inkjet printed planar transmission lines for RF and microwave applications: Considerations on ink composition, nanoparticle size distribution and sintering time

    A. Chiolerio;M. Cotto;P. Pandolfi;P. Martino

  • Microwave modeling and characterization of thick coplanar waveguides on oxide-coated lithium niobate substrates for electro-optical applications

    G. Ghione;M. Goano;G. Madonna;C. Omegna

  • A general conformal-mapping approach to the optimum electrode design of coplanar waveguides with arbitrary cross section

    M. Goano;F. Bertazzi;P. Caravelli;G. Ghione

  • A computationally efficient unified approach to the numerical analysis of the sensitivity and noise of semiconductor devices

    G. Ghione;F. Filicori

Frequent Co-Authors

Paolo Colantonio
Paolo Colantonio University of Rome Tor Vergata
Ernesto Limiti
Ernesto Limiti University of Rome Tor Vergata
Ming C. Wu
Ming C. Wu University of California, Berkeley
Gaudenzio Meneghesso
Gaudenzio Meneghesso University of Padua
Matteo Meneghini
Matteo Meneghini University of Padua
Enrico Zanoni
Enrico Zanoni University of Padua
Dalma Novak
Dalma Novak Octane Wireless
Andrea Lamberti
Andrea Lamberti Polytechnic University of Turin
Deborah L. Sivco
Deborah L. Sivco Princeton University
Colin J. Humphreys
Colin J. Humphreys Queen Mary University of London

External Links

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

For students pursuing Electronics and Electrical Engineering, exploring related online degrees can broaden career opportunities. Many professionals turn to accelerated programs to quickly gain new skills while balancing work commitments. One such option is a fast track project management degree online, which equips graduates with the leadership and organizational skills essential for managing complex engineering projects.

Those interested in further specialization may consider a bachelor project management program. These degrees are designed to provide foundational business and project coordination knowledge that complements technical expertise in electrical systems and electronics.

Working adults especially benefit from accelerated online degree programs, which offer flexible schedules and faster completion timelines to adapt to busy lifestyles. This accessibility helps more students transition smoothly into leadership roles or shift focus toward emerging industries like renewable energy and automation.

Additionally, engineering professionals interested in education and training roles may find value in pursuing programs such as the best online instructional design master's programs. These prepare graduates to develop effective technical training materials and improve knowledge transfer within organizations.

Best Scientists Citing Giovanni Ghione

Trending Scientists

Recently Published Articles