Gamma rays and neutrons attenuation performance of a developed lead borate glass for radiotherapy room

Author:

Zeed Mona Abo12,El Shazly Raed M34,Elesh Eman56,El-Mallah Hanaa M12,Saeed Aly78ORCID

Affiliation:

1. Mathematics and Physics Department , Faculty of Engineering, , Port Said, 42526 , Egypt

2. Port Said University , Faculty of Engineering, , Port Said, 42526 , Egypt

3. Department of Physics , Faculty of Science, , Nasr City, 11884, Cairo , Egypt

4. Al-Azhar University , Faculty of Science, , Nasr City, 11884, Cairo , Egypt

5. Department of Physics , Faculty of Science, , Port Said, 42526 , Egypt

6. Port Said University , Faculty of Science, , Port Said, 42526 , Egypt

7. Mathematical and Natural Science Department , Faculty of Engineering, , Badr, 11829, Cairo , Egypt

8. Egyptian Russian University , Faculty of Engineering, , Badr, 11829, Cairo , Egypt

Abstract

Abstract The development of radiation therapy necessitated a continuous R&D for radiotherapy rooms' glass windows to reach the highest levels of protection for the staff of the radiotherapy facility. Therefore, in this article, a novel type of lead borate glass depending on parallel augmenting of lead and boron was produced to be used as gamma-rays and fast and thermal neutrons barriers in radiotherapy rooms. Neutrons and gamma rays’ attenuation parameters, fast neutrons removal cross section ${\varSigma}_R$, thermal neutron total cross section ${\sigma}_T$, mass attenuation coefficient $\sigma$, linear attenuation coefficient μ, half-value layer, mean free path, effective atomic number Zeff, effective electron density Neff, and buildup factor for energy absorption (energy absorption buildup factor) and exposure (exposure buildup factor) were studied extensively. Three tools, Phy-X/PSD, EpiXS and XCOM computer programs and the standard mixture rules were utilized to estimate the attenuation parameters. The improvement caused by the augmentation of lead and boron in both gamma rays and neutrons attenuation was evident from the obtained results. The glass containing the highest lead and boron concentration PbB5, 40Pb-50B, which is the most efficient attenuator for gamma rays and both thermal and fast neutrons was recommended to be a distinguished choice as a shield in a radiotherapy room.

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology, Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

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