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Measurement of Doppler broadening of prompt gamma-rays from various zirconium- and ferro-borons

土川 雄介; 甲斐 哲也; 阿部 雄太; 大石 佑治*; Sun, Y.*; 及川 健一; 中谷 健; 佐藤 一憲

Nuclear Instruments and Methods in Physics Research A, 991, p.164964_1 - 164964_5, 2021/03



The Energy-resolved neutron imaging system, RADEN

篠原 武尚; 甲斐 哲也; 及川 健一; 中谷 健; 瀬川 麻里子; 廣井 孝介; Su, Y.; 大井 元貴; 原田 正英; 飯倉 寛; et al.

Review of Scientific Instruments, 91(4), p.043302_1 - 043302_20, 2020/04

 被引用回数:1 パーセンタイル:30.41(Instruments & Instrumentation)

The energy-resolved neutron imaging system, RADEN, has been installed at the pulsed neutron source in the Materials and Life Science Experimental Facility of the Japan Proton Accelerator Research Complex. In addition to conventional neutron radiography and tomography, RADEN, the world's first imaging beam-line at a pulsed neutron source, provides three main options for new, quantitative neutron imaging techniques: Bragg-edge imaging to visualize the spatial distribution of crystallographic information, resonance absorption imaging for elemental composition and temperature information, and polarized neutron imaging for magnetic field information. This paper describes the results of characterization studies of the neutronic performance and installed devices at RADEN and shows the results of several demonstration studies for pulsed neutron imaging.



酒井 健二; 大井 元貴; 高田 弘; 甲斐 哲也; 中谷 健; 小林 庸男*; 渡邊 聡彦*

JAEA-Technology 2018-011, 57 Pages, 2019/01


核破砕中性子源やミュオン標的などを安全に効率よく運転するために、物質・生命科学実験施設(MLF)は、専用の全体制御システム(GCS)を持ち、運転状況に応じた機器の監視操作やインターロックを運用している。GCSは、その役割に応じて、ネットワーク系(LAN), 統括制御系(ICS), サーバー, インターロック系(ILS), タイミング配信系(TDS)など幾つかのサブシステムで構成される。GCSは、MLF内の機器を独自に運転制御する一方、J-PARCの加速器や他実験施設と連動しながらMLFの安定したビーム運転を実現している。2008年度のビーム運転開始以来、GCSは運転制御コミッショニングに基づく改修を経て、システム性能を継続的に維持する視点から、ICSの大幅なアップグレードやILSの機能拡張を実施してきた(2010年度-2015年度)。この様に運転開始から約10年間、GCSには全般に渡って数多くの追加・変更がなされてきた。したがってGCS高度化の今後の方向性を決めるために、これまでの高度化の履歴とGCSの現況を把握することが重要と考え、2017年度時のGCSの構成・機能・役割を整理して取り纏めた。


Spatial resolution test targets made of gadolinium and gold for conventional and resonance neutron imaging

瀬川 麻里子; 及川 健一; 甲斐 哲也; 篠原 武尚; 林田 洋寿*; 松本 吉弘*; Parker, J. D.*; 中谷 健; 廣井 孝介; Su, Y.; et al.

JPS Conference Proceedings (Internet), 22, p.011028_1 - 011028_8, 2018/11

We have fabricated and utilized spatial resolution test targets made of gadolinium and gold for conventional and resonance neutron imaging performed at RADEN, located at beam line BL22 of the J-PARC Materials and Life Science Experimental Facility (MLF). RADEN covers a broad energy range from cold neutrons to high-energy neutrons with energy of several tens keV and was designed to perform energy-resolved neutron imaging utilizing two-dimensional detectors combined with the accurate measurement of neutron energy by the time-of-flight method. The test targets were designed to verify the spatial resolution and image uniformity of two kinds of neutron detectors, counting-type detectors and camera-type detectors. In this presentation, we report the details of these two-dimensional test targets, and the results of demonstrations using the test targets with our neutron imaging detectors. This work was supported in part by the Photon and Quantum Basic Research Coordinated Development Program from the Ministry of Education, Culture, Sports, Science and Technology, Japan.


Revising the 4${it f}$ symmetry in CeCu$$_{2}$$Ge$$_{2}$$; Soft X-ray absorption and hard X-ray photoemission spectroscopy

荒谷 秀和*; 中谷 泰博*; 藤原 秀紀*; 川田 萌樹*; 金井 惟奈*; 山神 光平*; 藤岡 修平*; 濱本 諭*; 久我 健太郎*; 木須 孝幸*; et al.

Physical Review B, 98(12), p.121113_1 - 121113_6, 2018/09


 被引用回数:3 パーセンタイル:64.52(Materials Science, Multidisciplinary)

We present a detailed study on the $$4f$$ ground state symmetry of the pressure-induced superconductor CeCu$$_2$$Ge$$_2$$ probed by soft X-ray absorption and hard X-ray photoemission spectroscopy. The revised Ce $$4f$$ ground states are determined as $$|{Gamma_7}rangle=sqrt{0.45}|{J_{z}=pm frac{5}{2}}rangle - sqrt{0.55}|{mp frac{3}{2}}rangle$$ with $$Sigmamathchar`-{rm type}$$ in-plane rotational symmetry. This gives an in-plane magnetic moment consistent with the antiferromagnetic moment as reported in neutron measurements. Since the in-plane symmetry is the same as that for the superconductor CeCu$$_2$$Si$$_2$$, we propose that the charge distribution along the $$c$$-axis plays an essential role in driving the system into a superconducting phase.


Stroboscopic time-of-flight neutron diffraction during cyclic testing using the event data recording system at J-PARC

川崎 卓郎; 稲村 泰弘; 伊藤 崇芳*; 中谷 健; Harjo, S.; Gong, W.*; 相澤 一也

Journal of Applied Crystallography, 51(3), p.630 - 634, 2018/06

 被引用回数:2 パーセンタイル:61.54(Chemistry, Multidisciplinary)

A time-resolved time-of-flight neutron diffraction technique to characterize the structural properties of materials during cyclic tests has been developed. By adopting the developed technique, the behaviors of the crystal lattice and domains of the piezoelectric material in a multilayer-type piezoelectric actuator driven by a cyclic electric field were evaluated. The variation in diffraction intensity during the application of a cyclic electric field was obtained successfully, and the hysteresis-like behaviors of both the lattice strain and the 90$$^{circ}$$ domain switching were revealed.


Status report of the chopper spectrometer 4SEASONS

梶本 亮一; 中村 充孝; 稲村 泰弘; 蒲沢 和也*; 池内 和彦*; 飯田 一樹*; 石角 元志*; 村井 直樹; 吉良 弘*; 中谷 健; et al.

Journal of Physics; Conference Series, 1021(1), p.012030_1 - 012030_6, 2018/06

 被引用回数:3 パーセンタイル:10.48

4SEASONS is a medium-resolution thermal neutron chopper spectrometer in the Materials and Life Science Experimental Facility (MLF) at J-PARC. Although 4SEASONS is routinely used for many experiments by internal and external users, upgrading and maintenance work is still underway. This paper reviews the recent improvements of the instrument.


Evidence for momentum-dependent heavy fermionic electronic structures; Soft X-ray ARPES for the superconductor CeNi$$_{2}$$Ge$$_{2}$$ in the normal state

中谷 泰博*; 荒谷 秀和*; 藤原 秀紀*; 森 健雄*; 鶴田 篤史*; 橘 祥一*; 山口 貴司*; 木須 孝幸*; 山崎 篤志*; 保井 晃*; et al.

Physical Review B, 97(11), p.115160_1 - 115160_7, 2018/03


 被引用回数:1 パーセンタイル:87.78(Materials Science, Multidisciplinary)

We present clear experimental evidence for the momentum-dependent heavy fermionic electronic structures of the 4${it f}$-based strongly correlated system CeNi$$_{2}$$Ge$$_{2}$$ by soft X-ray angle-resolved photoemission spectroscopy. A comparison between the experimental three-dimensional quasiparticle dispersion of LaNi$$_{2}$$Ge$$_{2}$$ and CeNi$$_{2}$$Ge$$_{2}$$ has revealed that heavy fermionic electronic structures are seen in the region surrounding at a specific momentum. Furthermore, the wave vectors between the observed "heavy spots" are consistent with a result of neutron scattering reflecting magnetic correlations, which could be a trigger of the superconductivity in CeNi$$_{2}$$Ge$$_{2}$$.


Materials and Life Science Experimental Facility at the Japan Proton Accelerator Research Complex, 3; Neutron devices and computational and sample environments

坂佐井 馨; 佐藤 節夫*; 瀬谷 智洋*; 中村 龍也; 藤 健太郎; 山岸 秀志*; 曽山 和彦; 山崎 大; 丸山 龍治; 奥 隆之; et al.

Quantum Beam Science (Internet), 1(2), p.10_1 - 10_35, 2017/09



Reliability estimation of neutron resonance thermometry using tantalum and tungsten

甲斐 哲也; 廣井 孝介; Su, Y.; 篠原 武尚; Parker, J. D.*; 松本 吉弘*; 林田 洋寿*; 瀬川 麻里子; 中谷 健; 及川 健一; et al.

Physics Procedia, 88, p.306 - 313, 2017/06

 被引用回数:3 パーセンタイル:6.96

Neutron resonance thermometry, which measures material temperature by analyzing the Doppler broadening of a neutron resonance peak, is one of the applications of energy-resolved neutron imaging at RADEN of J-PARC. Although this technique is promising, advantages and disadvantages have not been discussed in practical applications. The authors measured neutron transmission rates of tantalum and tungsten foils in a heater chamber up to 300 degrees Celsius at RADEN. The energy-dependent neutron transmission rates with different statistics were obtained after the measurements by selecting arbitrary measuring intervals from one measurement, and the temperatures of the foils were estimated from those transmission rates with different statistics. The reliability of the neutron resonance thermometry with statistical accuracy, irradiation time and spatial resolution are discussed.


Circular dichroism in resonant angle-resolved photoemission spectra of LaNi$$_{2}$$Ge$$_{2}$$

中谷 泰博*; 藤原 秀紀*; 荒谷 秀和*; 森 健雄*; 橘 祥一*; 山口 貴司*; 木須 孝幸*; 山崎 篤志*; 保井 晃*; 山上 浩志*; et al.

Journal of Electron Spectroscopy and Related Phenomena, 220, p.50 - 53, 2017/01

 被引用回数:1 パーセンタイル:83.64(Spectroscopy)

重い電子化合物CeNi$$_{2}$$Ge$$_{2}$$の非4$$f$$バンド由来の電子構造を明らかにするため、LaNi$$_{2}$$Ge$$_{2}$$の軟X線角度分解光電子分光を行った。La M$$_{4,5}$$吸収端での光電子スペクトルで、価電子帯のLa 5$$d$$成分の明瞭な強度の増大が観測された。さらに、軌道対称性に起因するバンドに依存した円二色性が観測された。


Electronic structures of ferromagnetic CeAgSb$$_{2}$$; Soft X-ray absorption, magnetic circular dichroism, and angle-resolved photoemission spectroscopies

斎藤 祐児; 藤原 秀紀*; 山口 貴司*; 中谷 泰博*; 森 健雄*; 渕本 寛人*; 木須 孝幸*; 保井 晃*; 宮脇 淳*; 今田 真*; et al.

Journal of the Physical Society of Japan, 85(11), p.114713_1 - 114713_7, 2016/11

 被引用回数:7 パーセンタイル:39.4(Physics, Multidisciplinary)

軟X線吸収(XAS)、磁気円二色性(XMCD)、角度分解光電子分光(ARPES)により強磁性体CeAgSb$$_{2}$$の電子状態を調べた。Ce $$M_{4,5}$$ XASスペクトルのサテライト構造の強度が非常に小さいことから、Ce 4${it f}$電子は非常に局在的であることが明らかとなった。Ce $$M_{4,5}$$ XASの線二色性効果から、Ce 4${it f}$基底状態は${it c}$軸方向を向いた$$Gamma$$$$_{6}$$であることが分かった。XMCD結果は、CeAgSb$$_{2}$$の局在磁性描像を支持する。さらに、ARPESで得られたバンド構造は、CeAgSb$$_{2}$$では無くLaAgSb$$_{2}$$に対するバンド計算結果とよく一致する。しかしながら、Ce 3${it d}$-4${it f}$共鳴ARPES結果では、ブリルアンゾーンの一部でCe 4$$f^{1}_{5/2}$$と4$$f^{1}_{7/2}$$ピーク強度比に波数依存性が観測され、Ce 4${it f}$と伝導電子に無視できない混成効果が有ることが分かった。このことは、CeAgSb$$_{2}$$のあまり大きくない電子比熱係数と関係づけることができる。



稲村 泰弘; 伊藤 崇芳*; 鈴木 次郎*; 中谷 健

JAEA-Testing 2016-001, 91 Pages, 2016/06




中性子実験装置J-PARC編,15; MLF計算環境

中谷 健; 稲村 泰弘

波紋, 26(1), p.42 - 45, 2016/02



Recent progress in the chopper spectrometer 4SEASONS at J-PARC

梶本 亮一; 中村 充孝; 稲村 泰弘; 蒲沢 和也*; 池内 和彦*; 飯田 一樹*; 石角 元志*; 中島 健次; 河村 聖子; 中谷 健; et al.

JAEA-Conf 2015-002, p.319 - 329, 2016/02

4SEASONS ($textit{SIKI}$) is one of the three chopper spectrometers operating in MLF at J-PARC, and covers thermal neutron region ($$10^0$$ - $$10^2$$ meV) with relaxed resolution and high flux. The repetition rate multiplication by the Fermi chopper on this short length (18 m between the source and the sample) spectrometer enables wide-band multiple-incident-energy (multi-$$E_mathrm{i}$$) measurements, which proved to be useful in observing hierarchical structures in excitations over a large energy scale. On the other hand, the upgrading work of the spectrometer has been continued since the first inelastic scattering experiment in 2009. For examples, we took several measures to suppress background, installed new detectors recently, and are developing a new Fermi chopper now. In the presentation, we show examples of scientific outputs from the spectrometer which benefit from the multi-$$E_mathrm{i}$$ measurements, and recent or planned upgrades of the instrument.


Design and performance of high-pressure PLANET beamline at pulsed neutron source at J-PARC

服部 高典; 佐野 亜沙美; 有馬 寛*; 小松 一生*; 山田 明寛*; 稲村 泰弘; 中谷 健; 瀬戸 雄介*; 永井 隆哉*; 内海 渉; et al.

Nuclear Instruments and Methods in Physics Research A, 780, p.55 - 67, 2015/04

 被引用回数:40 パーセンタイル:1.21(Instruments & Instrumentation)



Operation status of interlock system of Materials and Life Science Experimental Facility (MLF) in J-PARC

酒井 健二; 甲斐 哲也; 大井 元貴; 渡辺 聡彦; 中谷 健; 髭本 亘; 明午 伸一郎; 坂元 眞一; 高田 弘; 二川 正敏

Progress in Nuclear Science and Technology (Internet), 4, p.264 - 267, 2014/04

J-PARCの物質・生命科学実験施設(MLF)は、陽子ビームをターゲットに入射し、大強度の中性子・ミュオンビームを発生させ、実験装置に供給する施設である。MLFでは、ビーム運転の他、機器保守、実験装置増強などの作業に対して安全を確保するために、MPS, TPS, PPSという3種類のインターロックシステムを運用している。これらのインターロックシステムは、J-PARCの中央制御室を通じて加速器や他実験施設と連動して運用される。MPSは想定外のビーム照射から機器を保護し、TPSは中性子ターゲットに特化して重大なトラブルを防ぐ役割を果たす。PPSは運転員を高放射線による被曝から保護する。さらに、PPSは、線源保守エリアへの入退室を制限したり、利用者の実験装置室への安全な入退室を管理する役割も持つ。MLFインターロックシステムは、2008年の5月にビーム運転を開始した後、ターゲット関連機器の増強や段階的な実験装置の増設に応じて対象を拡大しているが、これまでトラブルなく安定に運用されてきた。本発表では、MLFインターロックシステムの設計概念,構成,運転状況及びアップグレードなどについて報告する。


2D neutron diffraction imaging on an ammonite

社本 真一; 樹神 克明; 伊巻 正*; 中谷 健; 大下 英敏*; 金子 直勝*; 増子 献児*; 坂本 健作; 山口 憲司; 鈴谷 賢太郎; et al.

JPS Conference Proceedings (Internet), 1, p.014011_1 - 014011_5, 2014/03



Current status of a new polarized neutron reflectometer at the intense pulsed neutron source of the Materials and Life Science Experimental Facility (MLF) of J-PARC

武田 全康; 山崎 大; 曽山 和彦; 丸山 龍治; 林田 洋寿; 朝岡 秀人; 山崎 竜也; 久保田 正人; 相澤 一也; 新井 正敏; et al.

Chinese Journal of Physics, 50(2), p.161 - 170, 2012/04

The construction of a new polarized neutron reflectometer is now in progress at the Materials and Life Science Experimental Facility (MLF) of the Japan Proton Accelerator Research Complex (J-PARC). MLF has the world's brightest pulsed neutron and muon sources (JSNS and MUSE). The user program of MLF has been already started in 2008, and now nine neutron and two muon spectrometers are in operation. Installation of the new reflectometer was expected to be completed in March 2011. However, the construction was interrupted by the massive earthquake hitting northeast Japan, including Tokai-mura where J-PARC is located. We expect to restart the user program of the new polarized neutron reflectometer at the beginning of next year (2012).


Repetition Rate Multiplication: RRM, an advanced measuring method planed for the backscattering instrument, ${it DNA}$ at the MLF, J-PARC

高橋 伸明; 柴田 薫; 川北 至信; 中島 健次; 稲村 泰弘; 中谷 健; 中川 洋; 藤原 悟; 佐藤 卓*; 筑紫 格*; et al.

Journal of the Physical Society of Japan, 80(Suppl.B), p.SB007_1 - SB007_4, 2011/12

 被引用回数:4 パーセンタイル:62.68(Physics, Multidisciplinary)

A TOF-BSS named ${it DNA}$ has been under construction on BL02 in the MLF of J-PARC. We have estimated expected performances of several candidates under realistic neutron source parameters at MLF. The expected neutron intensity under comparable energy resolutions of the ${it DNA}$-type is 2.6 times higher than that of the BASIS-type. Consequently, we have chosen the CM with pulse-shaping device for ${it DNA}$. Pulse-shaping is a good technique from a view point of a variability of resolution. On the other hand, a neutron energy band passing through the pulse-shaping chopper is limited and thus scanning range with one phase of the chopper is narrow. Of course, ${it DNA}$ also can access larger energy transfers by appropriate phasing of the pulse-shaping chopper. In addition, ${it DNA}$ will be able to utilize Repetition Rate Multiplication (RRM). RRM is essentially a way to employ multiple pulse-shaped incident neutron beams to effectively increase neutron counting time to more efficiently measure the inelastic region. In this presentation we will show the chopper sequence and introduce the RRM mode of the forthcoming backscattering spectrometer ${it DNA}$ in detail.

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