Journal article
Quantum effects on dynamic structure factors in dense magnetized plasmas
- Abstract:
 - We extend the classical magnetohydrodynamics formalism to include nonlocal quantum behavior via the phenomenological Bohm potential. We then solve the quantum magnetohydrodynamics equations to obtain a new analytical form of the dynamic structure factor (DSF), a fundamental quantity linking theory and experiments. Our results show that the three-peak structure—one central Rayleigh peak and two Brillouin peaks—of the DSF arising from quantum hydrodynamic fluctuations becomes (in general) a five-peak structure—one central Rayleigh peak and two pairs of peaks associated with fast and slow magnetosonic waves. The Bohm contribution influences the positions and characteristics (height, width, and intensity) of the peaks by introducing three significant modifications: (a) an increase in effective thermal pressure, (b) a reduction in the adiabatic index, and (c) an enhancement of effective thermal diffusivity. The multiple DSF peaks enable concurrent measurements of diverse plasma properties, transport coefficients, and thermodynamic parameters in magnetized dense plasmas. The potential for experimental validation of our theory looms large, particularly through future experiments conducted at state-of-the-art laser facilities.
 
- Publication status:
 - Published
 
- Peer review status:
 - Peer reviewed
 
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                        (Preview, Version of record, pdf, 604.8KB, Terms of use)
 
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- Publisher copy:
 - 10.1103/PhysRevResearch.6.013089
 
Authors
- Publisher:
 - American Physical Society
 - Journal:
 - Physical Review E: Statistical, Nonlinear, and Soft Matter Physics More from this journal
 - Volume:
 - 6
 - Issue:
 - 1
 - Article number:
 - 013089
 - Publication date:
 - 2024-01-24
 - Acceptance date:
 - 2023-12-06
 - DOI:
 - EISSN:
 - 
                    2470-0053
 - ISSN:
 - 
                    2470-0045
 
- Language:
 - 
                    English
 - Pubs id:
 - 
                  1578339
 - Local pid:
 - 
                    pubs:1578339
 - Deposit date:
 - 
                    2023-12-07
 
Terms of use
- Copyright holder:
 - Mondal and Gregori
 - Copyright date:
 - 2024
 - Rights statement:
 - © The Author(s) 2024. Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI.
 
- Licence:
 - CC Attribution (CC BY)
 
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