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Pablo J. Bilbao

@pablojbilbao.com
47 followers 86 following 27 posts

PhD in plasma physics @oxfordphysics.bsky.social @ox.ac.uk Alumnus: @golp-ist.bsky.social @istecnico.bsky.social @lancasteruni.bsky.social pablojbilbao.com

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Pablo J. Bilbao @pablojbilbao.com · 11/06/2026
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Pablo J. Bilbao @pablojbilbao.com · 11/06/2026
The Fireball-IV experiment is taking place right now at @cern.bsky.social! More pair beam plasma instabilities to come? @oxfordphysics.bsky.social
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Pablo J. Bilbao @pablojbilbao.com · 21/01/2026
New work by @diogodcarvalho.bsky.social, W. Mori, @luisoliveiraesilva.bsky.social & E.P. Alves! Can you learn collision operators directly from plasma simulation data? This method extracts them from differentiable-simulations! A step forward to data-driven plasma physics. arxiv.org/pdf/2601.10885
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Pablo J. Bilbao @pablojbilbao.com · 12/09/2025
Officially Dr. Pablo! Immensely grateful to everyone at @golp-ist.bsky.social and to all the colleagues I’ve had the chance to work with over these past years. This journey wouldn’t have been the same without you. I’m sad to leave GoLP, but excited for what’s next, more coming soon, stay tuned!!
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Pablo J. Bilbao @pablojbilbao.com · 21/04/2025
We explore the parameter space where this mechanism operates. Turns out, synchrotron-cooled pair plasmas can support this instability over astrophysically and experimentally relevant conditions.
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Pablo J. Bilbao @pablojbilbao.com · 21/04/2025
Using massive particle-in-cell simulations, we show that these rings don’t just form—they radiate. What comes out is linearly polarized, coherent, narrowband radiation, driven by the electron cyclotron maser instability (ECMI).
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Pablo J. Bilbao @pablojbilbao.com · 12/04/2025
Using massive particle-in-cell simulations (some of the larges on this kind of plasma), we show that what comes out is linearly polarized, coherent, narrow-band radiation, driven by the electron cyclotron maser instability (ECMI).
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