An Adjoint Method for High-Resolution EPMA Based on the Spherical Harmonics (PN) Model of Electron Transport

Author:

Claus Tamme1,Achuda Gaurav2,Bünger Jonas1,Richter Silvia2,Torrilhon Manuel1

Affiliation:

1. ACoM, Applied and Computational Mathematics, RWTH Aachen University, Aachen, Germany

2. GFE, Central Facility for Electron Microscopy, RWTH Aachen University, Aachen, Germany

Publisher

Informa UK Limited

Reference31 articles.

1. Achuda G. T. Claus S. Richter and M. Torrilhon. 2023. Subscale inversion of x-ray emission in electron probe microanalysis based on deterministic transport equations. (submitted to Proceedings of the 17th European Workshop on modern developments and applications in microbeam analysis - EMAS2023).

2. Bünger J. 2021. Three-dimensional modelling of x-ray emission in electron probe microanalysis based on deterministic transport equations. PhD thesis. RWTH Aachen University Number: RWTH-2021-05180.

3. Stable Boundary Conditions and Discretization for $P_N$ Equations

4. A Model for Characteristic X-Ray Emission in Electron Probe Microanalysis Based on the (Filtered) Spherical Harmonic () Method for Electron Transport

5. Discrete adjoint methodology for general multiphysics problems

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