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Thanks for the question, and sorry for the late reply! Just to clarify the question: do I understand correctly that you are asking about the If yes, than here are some answers:
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Hey Remi! Thanks for getting back to me. I was referring to the PEC boundary conditions on this page https://warpx.readthedocs.io/en/latest/theory/PML.html. "If absorbing boundaries are used, an image charge (equal weight but opposite charge) is considered in the mirror location accross the boundary, and the density from that charge is also deposited in the simulation domain" I'm guessing this absorbing boundary is used so that charge does not build up at the walls when particles are removed. If I'm understanding the alrogithm correctly, particles that are close the boundary have their opposite charge deposited on the other side of the boundary so that they cancel at the walls. Is this correct? |
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Hello! I'm curious how the particle absorbing boundary condition is implemented.
Does the mirror particle travel into the simulation domain?
Would it be possible to use this mirror-technique without solving Maxwell's eqs. in the guard/mirror region?
Can you give me more general information about this implementation?
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