| Measuring the electrical charge and settling velocity of volcanic ash with a new, cost-effective apparatus (VoltAsh) both in the laboratory and in the field | Bulletin of volcanology |  | | 2026 | 2 | 0 |
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| A cost-effective, open source, high resolution visible wavelength camera network: design and applications for long-term monitoring and research in volcanology | |  | | 2026 | 1 | 0 |
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| In-situ evidence of volcanic ash aggregation during fallout from combined ground- and UAS-based observations | Scientific reports |  | | 2026 | 12 | 20 |
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| In situ volcanic ash sampling and aerosol–gas analysis based on UAS technologies (AeroVolc) | Atmospheric measurement techniques |  | | 2025 | 41 | 135 |
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| Combining Visible‐ and Infrared‐Wavelength Observations With Numerical Modeling to Describe Vulcanian Eruption Plumes at Sabancaya, Peru | Journal of geophysical research. Solid earth |  | | 2024 | 14 | 21 |
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| Image analysis of volcanic plumes: A simple calibration tool to correct for the effect of wind | Volcanica |  | | 2023 | 8 | 16 |
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| PlumeTraP: A New MATLAB-Based Algorithm to Detect and Parametrize Volcanic Plumes from Visible-Wavelength Images | Remote sensing |  | | 2022 | 222 | 126 |
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