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The CHIMERAS Project: Design Framework for the Collisionless HIgh-beta Magnetized Experiment Researching Astrophysical Systems

Plasma Physics 2025-05-13 v1 Astrophysics of Galaxies Instrumentation and Methods for Astrophysics Solar and Stellar Astrophysics Space Physics

Abstract

From the near-Earth solar wind to the intracluster medium of galaxy clusters, collisionless, high-beta, magnetized plasmas pervade our universe. Energy and momentum transport from large-scale fields and flows to small scale motions of plasma particles is ubiquitous in these systems, but a full picture of the underlying physical mechanisms remains elusive. The transfer is often mediated by a turbulent cascade of Alfv{\'e}nic fluctuations as well as a variety of kinetic instabilities; these processes tend to be multi-scale and/or multi-dimensional, which makes them difficult to study using spacecraft missions and numerical simulations alone (Dorfman et al. 2023; Lichko et al. 2020, 2023). Meanwhile, existing laboratory devices struggle to produce the collisionless, high ion beta (βi1\beta_i \gtrsim 1), magnetized plasmas across the range of scales necessary to address these problems. As envisioned in recent community planning documents (Carter et al. 2020; Milchberg and Scime 2020; Baalrud et al. 2020; Dorfman et al. 2023; National Academies of Sciences, Engineering, and Medicine 2024, it is therefore important to build a next generation laboratory facility to create a βi1\beta_i \gtrsim 1, collisionless, magnetized plasma in the laboratory for the first time. A Working Group has been formed and is actively defining the necessary technical requirements to move the facility towards a construction-ready state. Recent progress includes the development of target parameters and diagnostic requirements as well as the identification of a need for source-target device geometry. As the working group is already leading to new synergies across the community, we anticipate a broad community of users funded by a variety of federal agencies (including NASA, DOE, and NSF) to make copious use of the future facility.

Keywords

Cite

@article{arxiv.2505.06426,
  title  = {The CHIMERAS Project: Design Framework for the Collisionless HIgh-beta Magnetized Experiment Researching Astrophysical Systems},
  author = {S. Dorfman and S. Bose and E. Lichko and M. Abler and J. Juno and J. M. TenBarge and Y. Zhang and S. Chakraborty Thakur and C. A. Cartagena-Sanchez and P. Tatum and E. Scime and G. Joshi and S. Greess and C. Kuchta},
  journal= {arXiv preprint arXiv:2505.06426},
  year   = {2025}
}

Comments

18 pages, 1 figure

R2 v1 2026-06-28T23:27:49.920Z