David Hanggi
Physics and Astronomy · The Ohio State University
Publications
13
Citations
25
Est. group size
~4
Recurring co-author estimate
Active years
9
Publishing since 2018
David Hanggi's research focuses on high-intensity laser-plasma interactions, including how powerful laser pulses generate secondary particles and radiation such as X-rays, high-energy electrons, and ions when striking dense targets. This work involves developing diagnostic tools (like spectrometers and electron-scattering techniques) to characterize laser pulses and their effects. An earlier line of work examined thin-film transistors made from zinc tin oxide materials and how radiation affects their electrical properties.
Publication output has been modest and irregular over the last decade, with gaps in some years followed by small clusters of papers, including an uptick projected for 2026.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Exploring high-intensity laser-driven secondary sources via high-order spectral pulse shaping for high-energy-density experiments
Physics of Plasmas · 2026
- Effect of front surface engineering on high energy electron, X-ray and heavy ion generation from Relativistic laser interaction with thick high-Z targets
Open MIND · 2026
- High repetition-rate dual-channel X-ray spectrometer for high-intensity laser-plasma experiments
Review of Scientific Instruments · 2024
- Toward direct spatial and intensity characterization of ultra-high-intensity laser pulses using ponderomotive scattering of free electrons
Physics of Plasmas · 2023
- Towards direct spatial and intensity characterization of ultra-high intensity laser pulses using ponderomotive scattering of free electrons
arXiv (Cornell University) · 2023
- The effect of gamma-ray irradiation on the electrical characteristics of sol-gel derived zinc tin oxide thin film transistors
Solid-State Electronics · 2022
- Energy and Angular Distribution Measurements of Electron-ejection from the Focus of High-Intensity Laser Pulses
Frontiers in Optics + Laser Science 2022 (FIO, LS) · 2022
- Enhancement of electrical characteristics of a‐ZTO TFTs based on channel layers produced with alternating precursor concentration
Electronics Letters · 2018
- Enhancement of the electrical characteristics of thin-film transistors with multi-stack zinc tin oxide channel layers produced with 2 different solution concentrations
Bulletin of the American Physical Society · 2018
- Gamma-Ray Irradiation Effect on Sol-Gel Derived Zinc Tin Oxide Thin Film Transistors
APS · 2018
- Bulletin of the American Physical Society×3
- Physics of Plasmas×2
- Solid-State Electronics×1
- Review of Scientific Instruments×1
- Electronics Letters×1
- German Tiscareno
Physics and Astronomy · The Ohio State University
- Ronak Desai
Physics and Astronomy · The Ohio State University
- R. L. Daskalova
Physics and Astronomy · The Ohio State University
- Chris Orban
Physics and Astronomy · The Ohio State University
- Nick Czapla
Physics and Astronomy · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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