Uniqueness for an Inverse Source Problem in a Linearized Boltzmann Equation with Trace and Gradient Data

This paper addresses an inverse source problem for a linearized Boltzmannequation, a model that arises in important applications such as rarefied gas dynamics,radiative transfer, and particle transport. The aim is to determine an unknown source termfrom the model equation together with appropriate observational data. Under structuralconvexity assumptions on the Hamiltonian and an L2-boundedness condition on the linearizedcollision operator, uniqueness for the inverse source problem is proved using boundary traceand gradient data. The proof relies on a pointwise energy identity for the transport operatorcombined with estimates for the collision contribution.

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Publication Details

Journal
Journal of Advanced Research in Natural and Applied Sciences
Published
2026-09-30
DOI
https://doi.org/10.28979/jarnas.1965426
Primary Topic
Gas Dynamics and Kinetic Theory
Type
article
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article

Uniqueness for an Inverse Source Problem in a Linearized Boltzmann Equation with Trace and Gradient Data

Muhammed Hasdemir, Özlem Kaytmaz
Journal of Advanced Research in Natural and Applied Sciences
Gas Dynamics and Kinetic Theory
article

Uniqueness for an Inverse Source Problem in a Linearized Boltzmann Equation with Trace and Gradient Data

Muhammed Hasdemir, Özlem Kaytmaz
article en

Abstract

This paper addresses an inverse source problem for a linearized Boltzmannequation, a model that arises in important applications such as rarefied gas dynamics,radiative transfer, and particle transport. The aim is to determine an unknown source termfrom the model equation together with appropriate observational data. Under structuralconvexity assumptions on the Hamiltonian and an L2-boundedness condition on the linearizedcollision operator, uniqueness for the inverse source problem is proved using boundary traceand gradient data. The proof relies on a pointwise energy identity for the transport operatorcombined with estimates for the collision contribution.

Journal of Advanced Research in Natural and Applied SciencesVol. 12(3)
Zonguldak Bülent Ecevit University (TR), Adnan Menderes University (TR)
Affordable and clean energy
Openalex Percentile: Top 7%
Gas Dynamics and Kinetic Theory
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Uniqueness for an Inverse Source Problem in a Linearized Boltzmann Equation with Trace and Gradient Data — Muhammed Hasdemir, Özlem Kaytmaz · Journal of Advanced Research in Natural and Applied Sciences (2026) | TGRS Research Map | TGRS