Scintillation of lead tungstate crystal studied with single-electron beam from KUFEL

Mohamad Rizwan, Yusuke Uozumi, Kazuki Matsuo, Hideaki Ohgaki, Toshiteru Kii, Heishun Zen, Zviadi Tsamalaidze, Petr Evtoukhovitch, Samoilov Valentin

研究成果: 著書/レポートタイプへの貢献会議での発言

1 引用 (Scopus)

抄録

Lead tungstate (PWO) crystal has a very fast response, high atomic density and high radiation hardness. Therefore, they are suitable to be used for high-energy nuclear data measurements under highbackground circumstances. Although a good electron-ion separation with a pulse shape analysis technique is essential, scintillation pulse shapes have not been observed with electron beams of a wide energy range. A singleelectron beam technique has been developed at Kyoto University Free Electron Laser (KUFEL), and electron beams of 4-38 MeV are available. During the experiments, single electron beams bombarded a PWO crystal. By using oscilloscope we observed scintillation pulses of a PWO crystal coupled with a photomultiplier tube. Measured spectra were compared with the simulation code of EGS5 to analyze scattering effects. As the result, the pulse amplitudes show good linearity and the pulse shapes are almost constant in the observed energy range.

元の言語英語
ホスト出版物のタイトルAdvancing of Nuclear Science and Energy for National Development
ホスト出版物のサブタイトルProceedings of the Nuclear Science, Technology, and Engineering Conference 2014, NuSTEC 2014
編集者Khaidzir Hamzah, Faridah Mohamad Idris, Abu Bakar Hasan, Abdul Aziz Mohamed
出版者American Institute of Physics Inc.
ISBN(電子版)9780735413016
DOI
出版物ステータス出版済み - 4 29 2015
イベントNuclear Science, Technology, and Engineering Conference 2014: Advancing of Nuclear Science and Energy for National Development, NuSTEC 2014 - Skudai, Johor, マレーシア
継続期間: 11 11 201411 13 2014

出版物シリーズ

名前AIP Conference Proceedings
1659
ISSN(印刷物)0094-243X
ISSN(電子版)1551-7616

その他

その他Nuclear Science, Technology, and Engineering Conference 2014: Advancing of Nuclear Science and Energy for National Development, NuSTEC 2014
マレーシア
Skudai, Johor
期間11/11/1411/13/14

Fingerprint

lead tungstates
free electron lasers
scintillation
electron beams
pulses
crystals
oscilloscopes
photomultiplier tubes
pulse amplitude
nuclear energy
linearity
hardness
laser beams
energy
radiation
scattering
ions
electrons
simulation

All Science Journal Classification (ASJC) codes

  • Physics and Astronomy(all)

これを引用

Rizwan, M., Uozumi, Y., Matsuo, K., Ohgaki, H., Kii, T., Zen, H., ... Valentin, S. (2015). Scintillation of lead tungstate crystal studied with single-electron beam from KUFEL. : K. Hamzah, F. M. Idris, A. B. Hasan, & A. A. Mohamed (版), Advancing of Nuclear Science and Energy for National Development: Proceedings of the Nuclear Science, Technology, and Engineering Conference 2014, NuSTEC 2014 [040003] (AIP Conference Proceedings; 巻数 1659). American Institute of Physics Inc.. https://doi.org/10.1063/1.4916863

Scintillation of lead tungstate crystal studied with single-electron beam from KUFEL. / Rizwan, Mohamad; Uozumi, Yusuke; Matsuo, Kazuki; Ohgaki, Hideaki; Kii, Toshiteru; Zen, Heishun; Tsamalaidze, Zviadi; Evtoukhovitch, Petr; Valentin, Samoilov.

Advancing of Nuclear Science and Energy for National Development: Proceedings of the Nuclear Science, Technology, and Engineering Conference 2014, NuSTEC 2014. 版 / Khaidzir Hamzah; Faridah Mohamad Idris; Abu Bakar Hasan; Abdul Aziz Mohamed. American Institute of Physics Inc., 2015. 040003 (AIP Conference Proceedings; 巻 1659).

研究成果: 著書/レポートタイプへの貢献会議での発言

Rizwan, M, Uozumi, Y, Matsuo, K, Ohgaki, H, Kii, T, Zen, H, Tsamalaidze, Z, Evtoukhovitch, P & Valentin, S 2015, Scintillation of lead tungstate crystal studied with single-electron beam from KUFEL. : K Hamzah, FM Idris, AB Hasan & AA Mohamed (版), Advancing of Nuclear Science and Energy for National Development: Proceedings of the Nuclear Science, Technology, and Engineering Conference 2014, NuSTEC 2014., 040003, AIP Conference Proceedings, 巻. 1659, American Institute of Physics Inc., Nuclear Science, Technology, and Engineering Conference 2014: Advancing of Nuclear Science and Energy for National Development, NuSTEC 2014, Skudai, Johor, マレーシア, 11/11/14. https://doi.org/10.1063/1.4916863
Rizwan M, Uozumi Y, Matsuo K, Ohgaki H, Kii T, Zen H その他. Scintillation of lead tungstate crystal studied with single-electron beam from KUFEL. : Hamzah K, Idris FM, Hasan AB, Mohamed AA, 編集者, Advancing of Nuclear Science and Energy for National Development: Proceedings of the Nuclear Science, Technology, and Engineering Conference 2014, NuSTEC 2014. American Institute of Physics Inc. 2015. 040003. (AIP Conference Proceedings). https://doi.org/10.1063/1.4916863
Rizwan, Mohamad ; Uozumi, Yusuke ; Matsuo, Kazuki ; Ohgaki, Hideaki ; Kii, Toshiteru ; Zen, Heishun ; Tsamalaidze, Zviadi ; Evtoukhovitch, Petr ; Valentin, Samoilov. / Scintillation of lead tungstate crystal studied with single-electron beam from KUFEL. Advancing of Nuclear Science and Energy for National Development: Proceedings of the Nuclear Science, Technology, and Engineering Conference 2014, NuSTEC 2014. 編集者 / Khaidzir Hamzah ; Faridah Mohamad Idris ; Abu Bakar Hasan ; Abdul Aziz Mohamed. American Institute of Physics Inc., 2015. (AIP Conference Proceedings).
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abstract = "Lead tungstate (PWO) crystal has a very fast response, high atomic density and high radiation hardness. Therefore, they are suitable to be used for high-energy nuclear data measurements under highbackground circumstances. Although a good electron-ion separation with a pulse shape analysis technique is essential, scintillation pulse shapes have not been observed with electron beams of a wide energy range. A singleelectron beam technique has been developed at Kyoto University Free Electron Laser (KUFEL), and electron beams of 4-38 MeV are available. During the experiments, single electron beams bombarded a PWO crystal. By using oscilloscope we observed scintillation pulses of a PWO crystal coupled with a photomultiplier tube. Measured spectra were compared with the simulation code of EGS5 to analyze scattering effects. As the result, the pulse amplitudes show good linearity and the pulse shapes are almost constant in the observed energy range.",
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T1 - Scintillation of lead tungstate crystal studied with single-electron beam from KUFEL

AU - Rizwan, Mohamad

AU - Uozumi, Yusuke

AU - Matsuo, Kazuki

AU - Ohgaki, Hideaki

AU - Kii, Toshiteru

AU - Zen, Heishun

AU - Tsamalaidze, Zviadi

AU - Evtoukhovitch, Petr

AU - Valentin, Samoilov

PY - 2015/4/29

Y1 - 2015/4/29

N2 - Lead tungstate (PWO) crystal has a very fast response, high atomic density and high radiation hardness. Therefore, they are suitable to be used for high-energy nuclear data measurements under highbackground circumstances. Although a good electron-ion separation with a pulse shape analysis technique is essential, scintillation pulse shapes have not been observed with electron beams of a wide energy range. A singleelectron beam technique has been developed at Kyoto University Free Electron Laser (KUFEL), and electron beams of 4-38 MeV are available. During the experiments, single electron beams bombarded a PWO crystal. By using oscilloscope we observed scintillation pulses of a PWO crystal coupled with a photomultiplier tube. Measured spectra were compared with the simulation code of EGS5 to analyze scattering effects. As the result, the pulse amplitudes show good linearity and the pulse shapes are almost constant in the observed energy range.

AB - Lead tungstate (PWO) crystal has a very fast response, high atomic density and high radiation hardness. Therefore, they are suitable to be used for high-energy nuclear data measurements under highbackground circumstances. Although a good electron-ion separation with a pulse shape analysis technique is essential, scintillation pulse shapes have not been observed with electron beams of a wide energy range. A singleelectron beam technique has been developed at Kyoto University Free Electron Laser (KUFEL), and electron beams of 4-38 MeV are available. During the experiments, single electron beams bombarded a PWO crystal. By using oscilloscope we observed scintillation pulses of a PWO crystal coupled with a photomultiplier tube. Measured spectra were compared with the simulation code of EGS5 to analyze scattering effects. As the result, the pulse amplitudes show good linearity and the pulse shapes are almost constant in the observed energy range.

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