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<b>Dear FLASH Users,</b></div>
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I am writing to seek guidance on performing a simulation of a Z-pinch that includes target physics. Specifically, I am interested in modeling the simplest case: a spherical cryogenic mixture of deuterium-tritium (DT) with a coating. From previous posts, I understand
that FLASH does not support neutron rate computation. However, I have learned that FLASH supports the Burn unit, which includes nuclear burn processes. Therefore, I wonder if FLASH can perform a semi-one-step simulation, from the formation of a dynamic hohlraum
to the ignition of the inertial confinement fusion (ICF) target.</div>
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If possible, I would appreciate any information on how to integrate the Burn unit into the current Z-pinch simulation. I have already created two new species for the cryogenic deuterium-deuterium mixture (I have not yet set up tritium) and the coating material.
From the Cellular example, I understand that I need to set the mass fractions of isotopes, but I am unsure if this is compatible with the current Equation of State (EOS) I am using (considering the opacities and the fraction of species).</div>
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Additionally, is it possible to apply the Burn unit only to the target material, or must it be set globally? I would greatly appreciate any guidance or examples, such as cases in laser ICF simulations using FLASH.</div>
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I apologize if any of my questions are naive; I am earnestly trying to learn FLASH.</div>
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<b>Best regards,</b></div>
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Bowen Zhu</div>
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