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Member Since 2017
Luisa Capannolo
AGU Research
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Quantification of the Outer Radiation Belt Electron Precipitation and the Resultant Atmospheric Ionization
AGU 2024
spa-aeronomy | 13 december 2024
Murong Qin, Wen Li, Luisa Capannolo, Qianli Ma, Xi...
Energetic electron precipitation into the upper atmosphere is one of the major loss mechanisms of the Earths radiation belts and can enhance atmospher...
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Remote Sensing of Inner Magnetosphere Dynamics Using ELFIN’s Pitch-angle and Energy Resolved Spectra.
AGU 2024
spa-magnetospheric physics | 13 december 2024
Vassilis Angelopoulos, Ethan Tsai, Colin Wilkins, ...
Data acquired from ELFIN, a dual CubeSat mission, and analyzed over the last year offer an improved view of scattering and ionospheric precipitation o...
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Modeling Global Electron Precipitation Driven by Whistler Mode Waves:Integrating Physical and Deep Learning Approaches
AGU 2024
spa-magnetospheric physics | 10 december 2024
Sheng Huang, Wen Li, Qianli Ma, Xiaochen Shen, Lui...
Wave-particle interactions play a pivotal role in determining the radiation belt electron evolution, especially during periods of geomagnetically dist...
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A novel Machine learning technique to Parameterize EneRgetic Electron maps (AMPERE)
AGU 2024
spa-magnetospheric physics | 10 december 2024
Joshua Pettit, Luisa Capannolo, Sadie Elliott
Energetic electron precipitation (EEP) is one of the main processes contributing to the loss of energetic electrons in the outer radiation belt and ha...
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Statistical Properties and Drivers of Relativistic Electron Precipitation
AGU 2024
spa-magnetospheric physics | 10 december 2024
Luisa Capannolo, Andrew Staff, Wen Li, Katharine D...
Relativistic (>700 keV) electron precipitation (REP) often occurs in association with geomagnetic activity and has been previously linked to radiat...
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Modelling of the Martian Ionosphere and its Response to Solar Events through Machine Learning
AGU 2024
spa-solar and heliospheric physics | 09 december 2024
Marianna Felici, Nicholas Brackney B. Pickett, Jen...
The Martian ionosphere presents a dynamic environment influenced by external drivers, like solar activity, and internal drivers, like dust storms [e.g...
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Statistical Survey of Interchange Events in the Jovian Magnetosphere Using Juno Observations
GEOPHYSICAL RESEARCH LETTERS
05 october 2024
Alec Daly, Frederic Allegrini, Scott J. Bolton, Lu...

Interchange instability is known to drive fast radial transport of electrons and ions in Jupiter's inner and middle magnetosphere. In this study, w...

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Unraveling the Atmospheric Energy Input and Ionization Due To EMIC‐Driven Electron Precipitation From ELFIN Observations
AGU ADVANCES
07 june 2024
Luisa Capannolo, Robert A. Marshall, Wen Li, Grant...

Energetic electron precipitation (EEP) from the radiation belts into Earth's atmosphere leads to several profound effects (e.g., enhancement of ion...

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