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Journal Articles

Distributions of neutron yields and doses around a water phantom bombarded with 290-MeV/nucleon and 430-MeV/nucleon carbon ions

Satoh, Daiki; Kajimoto, Tsuyoshi*; Shigyo, Nobuhiro*; Itashiki, Yutaro*; Imabayashi, Yoichi*; Koba, Yusuke*; Matsufuji, Naruhiro*; Sanami, Toshiya*; Nakao, Noriaki*; Uozumi, Yusuke*

Nuclear Instruments and Methods in Physics Research B, 387, p.10 - 19, 2016/11

 Times Cited Count:4 Percentile:28.09(Instruments & Instrumentation)

Double-differential neutron yields from a water phantom bombarded with 290-MeV/nucleon and 430-MeV/nucleon carbon ions were measured at emission angles of 15$$^{circ}$$, 30$$^{circ}$$, 45$$^{circ}$$, 60$$^{circ}$$, 75$$^{circ}$$, and 90$$^{circ}$$ using the neutron-detection system constituting of liquid organic scintillators. The angular distributions of neutron yields and effective doses around the phantom were obtained by integrating the double-differential neutron yields and applying the fluence-to-effective dose conversion coefficients. The experimental data were compared with results of the Monte-Carlo simulation code PHITS. The PHITS results showed good agreement with the measured data. From the results, we concluded that the PHITS simulation is applicable to the dose estimation at carbon-therapy facilities.

Journal Articles

Synthesis and physical properties of pyrochlore iridium oxides Pb$$_{2-x}$$Ca$$_{x}$$Ir$$_{2}$$O$$_{7-y}$$

Sakai, Hironori; Ono, Hiroyuki*; Oba, Noriaki*; Kato, Masaki*; Yoshimura, Kazuyoshi*

Physica B; Condensed Matter, 329-333(2), p.1038 - 1039, 2003/05

 Times Cited Count:4 Percentile:26.91(Physics, Condensed Matter)

Pyrochlore iridium oxides Pb$$_{2-x}$$Ca$$_{x}$$Ir$$_{2}$$O$$_{7-y}$$ ($$x$$=0.0, 0.2, 0.4, 0.6, 0.8) were prepared by solid state reaction. The electrical resistivity and the magnetic susceptibility were measured between 4.2 and 300 K. These compounds show metallic conductivity and obey the Curie-Weiss law with temperature independent term. The metallic conductivity of Pb$$_{2}$$Ir$$_{2}$$O$$_{7}$$ is suppressed by the Ca substitution for Pb site.

Oral presentation

Study on neutron yield and dose distributions around a water phantom bombarded by carbon ions with therapeutic energies

Satoh, Daiki; Kajimoto, Tsuyoshi*; Shigyo, Nobuhiro*; Itashiki, Yutaro*; Imabayashi, Yoichi*; Koba, Yusuke*; Matsufuji, Naruhiro*; Sanami, Toshiya*; Nakao, Noriaki*; Uozumi, Yusuke*

no journal, , 

For reasonable design of shields at heavy-ion therapy facilities, it is important to understand neutron yields and doses around a patient bombarded by heavy-ion beams. In the present study, we measured the neutrons emitted from a water phantom, which mimics a body of patient, bombarded by carbon ions with therapeutic energy of 290 MeV/nucleon. The neutron detectors composed of liquid organic scintillator were placed at the directions of 15$${^circ}$$, 30$${^circ}$$, 45$${^circ}$$, 60$${^circ}$$, 75$${^circ}$$ and 90$${^circ}$$ with respect to the beam axis. By applying conversion coefficients of effective dose for AP irradiation to the measured double-differential neutron yields and integrating them above 2 MeV which is the minimum energy of the experimental data, we obtained the effective-dose distribution around the water phantom. The experimental data were compared with the results of the Monte-Carlo simulation code PHITS. While PHITS can reproduce the neutron spectra in higher energy region well, it overestimates the spectra below about 10 MeV. The effective dose calculated by PHITS with the same integration period also gave a larger value compared with the experimental data. We adjusted the absolute values of the PHITS results to agree with the experimental data at 90$${^circ}$$, and deduced the effective-dose distribution for neutrons above thermal energy in the angular region from 0$${^circ}$$ to 180$${^circ}$$. Furthermore, a simple analytic function was proposed to give the dose distribution around a patient. It makes possible to assess the dose distribution quickly and easily with sufficient precisions. These results contribute to a sophistication of shielding design at heavy-ion therapy facilities.

Oral presentation

Oral presentation

Development of LIBS analysis of cesium dissolved in water using radiation induced graft polymerization materials

Shibata, Takuya; Oba, Hironori; Seko, Noriaki*; Tagawa, Akihiro; Wakaida, Ikuo

no journal, , 

Oral presentation

LIBS for determination of cesium adsorbed to radiation-induced graft polymerization materials

Shibata, Takuya; Oba, Hironori; Seko, Noriaki*; Tagawa, Akihiro; Wakaida, Ikuo

no journal, , 

no abstracts in English

Oral presentation

LIBS analysis for cesium adsorbed to radiation-induced graft polymerization materials

Shibata, Takuya; Oba, Hironori; Seko, Noriaki*; Akaoka, Katsuaki; Wakaida, Ikuo

no journal, , 

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