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Method for the determination of electron density from multi-energy X-ray CT

Doniyor JumanazarovDepartment of Physics, Urgench State University, Urgench 220100, UzbekistanAsalkhon AlimovaNo. 3 Vocational School, Beshta community, Khazorasp, 220707, UzbekistanSh. Kh. IsmoilovUrgench Branch of Tashkent University of Information Technologies, Urgench 220100, UzbekistanFarruh AtamurotovInha University in Tashkent, Ziyolilar 9, Tashkent 100170, UzbekistanAzamat AbdikarimovDepartment of Physics, Urgench State University, Urgench 220100, UzbekistanUlrik L. OlsenTechnical University of Denmark, DTU Physics, 2800 Kgs., Lyngby, Denmark
NDT & E Internationaljournal2024en
ABI

Abstract

We propose a method for estimation of material’s electron density parameter (ρe) using multi-energy x-ray Computed Tomography (CT). Multi-energy CT uses a photon counting detector (PCD) to measure a material’s linear attenuation coefficient (LAC) at multiple energies with the simultaneous data acquisition. The physical effects in the PCD such as charge sharing and photon pileup result in spectral distortions of the energy spectrum. Corrects for such distortions are performed with a correction algorithm. A custom laboratory instrument for multi-energy CT is used to experimentally validate the method. The identification efficiency is evaluated for different numbers of energy channels. When using 15 energy channels without inter-gaps the method gives a relative deviation of 1.8% for estimation of ρe, for materials in the range of 0.43≤ρe≤1.06e−mol/cm3.

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