2018Journal of Physics Conference SeriesOpen access

National cyclotron centre at the Institute for Nuclear Research and Nuclear Energy

D. Tonev, N. Goutev, G. Asova, A Artinyan, Anguel Demerdjiev, Lachezar S. Georgiev, M. S. Yavahchova, V Bashev, S. G. Genchev, Elena Geleva, Maria Mincheva, Alex Nikolov, Dobromir Dimitrov

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Abstract

An accelerator laboratory is presently under construction in Sofia at the Institute for Nuclear Research and Nuclear Energy. The laboratory will use a TR24 type of cyclotron, which provides a possibility to accelerate a proton beam with an energy of 15 to 24 MeV and current of up to 0.4 mA. An accelerator with such parameters allows to produce a large variety of radioisotopes for development of radiopharmaceuticals. The most common radioisotopes that can be produced with such a cyclotron are PET isotopes like: 11 C, 13 N, 15 O, 18 F, 124 I, 64 Cu, 68 Ge/ 68 Ga, and SPECT isotopes like: 123 I, 111 In, 67 Ga, 57 Co, 99m Tc. Our aim is to use the cyclotron facility for research in the fields of radiopharmacy, radiochemistry, radiobiology, nuclear physics, materials sciences, applied research, new materials and for education in all these fields including nuclear energy. Presently we perform investigations in the fields of target design for production of radioisotopes, shielding and radioprotection, new ion sources etc.

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An accelerator laboratory is presently under construction in Sofia at the Institute for Nuclear Research and Nuclear Energy. The laboratory will use a TR24 type of cyclotron, which provides a possibility to accelerate a proton beam with an energy of 15 to 24 MeV and current of up to 0.4 mA. An accelerator with such parameters allows to produce a large variety of radioisotopes for development of radiopharmaceuticals. The most common radioisotopes that can be produced with such a cyclotron are PET isotopes like: 11 C, 13 N, 15 O, 18 F, 124 I, 64 Cu, 68 Ge/ 68 Ga, and SPECT isotopes like: 123 I, 111 In, 67 Ga, 57 Co, 99m Tc. Our aim is to use the cyclotron facility for research in the fields of radiopharmacy, radiochemistry, radiobiology, nuclear physics, materials sciences, applied research, new materials and for education in all these fields including nuclear energy. Presently we perform investigations in the fields of target design for production of radioisotopes, shielding and radioprotection, new ion sources etc.

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Available abstract

An accelerator laboratory is presently under construction in Sofia at the Institute for Nuclear Research and Nuclear Energy. The laboratory will use a TR24 type of cyclotron, which provides a possibility to accelerate a proton beam with an energy of 15 to 24 MeV and current of up to 0.4 mA. An accelerator with such parameters allows to produce a large variety of radioisotopes for development of radiopharmaceuticals. The most common radioisotopes that can be produced with such a cyclotron are PET isotopes like: 11 C, 13 N, 15 O, 18 F, 124 I, 64 Cu, 68 Ge/ 68 Ga, and SPECT isotopes like: 123 I, 111 In, 67 Ga, 57 Co, 99m Tc. Our aim is to use the cyclotron facility for research in the fields of radiopharmacy, radiochemistry, radiobiology, nuclear physics, materials sciences, applied research, new materials and for education in all these fields including nuclear energy. Presently we perform investigations in the fields of target design for production of radioisotopes, shielding and radioprotection, new ion sources etc.

Key concepts: Cyclotron, Nuclear physics, Physics, Nuclear engineering, Nuclear astrophysics, Electromagnetic shielding, Radiochemistry, Medical physics

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