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9篇 您的检索式:作者名="H.Sakurai"
    题名 作者 年代 出处 被引量
1Novel thermo-responsive formation of a hydrogel by stereo-complexation between PLLA-PEG-PL-LA and PDLA-PEG-PDLA block copolymers显示文摘Fujiwara T Mukose T Yamaoka T Yamane H.Sakurai S.Kimura Y 0,,:1
2Observation of New Isotope^(131)Ag via the Two-Step Fragmentation Technique显示文摘We report on the first observation of the neutron-rich nucleus^(131)Ag.This isotope was produced via fragmentation reactions of intense secondary radioactive ion beams,including 134,135Sn.The secondary beams were produced from induced fission reactions from a stable 238U beam at 345 MeV/nucleon.Secondary reaction residues were selected by the ZeroDegree spectrometer and identified by measuring their magnetic rigidity,time of flight,energy loss,and total kinetic energy.王赫 N.Aoi S.Takeuchi M.Matsushita P.Doornenbal T.Motobayashi D.Steppenbeck K.Yoneda K.Kobayashi J.Lee 刘红娜 Y.Kondo R.Yokoyama H.Sakurai 叶沿林 2013Chinese Physics Letters2013,30,4:0
3丰中子核^(63,65,67)Mn的在束γ谱学研究显示文摘利用放射性束68Fe轰击液氢靶引起的敲出反应,研究了极端丰中子核^(63,65,67)Mn的激发态,指认了它们的自旋宇称,建立了这三个原子核的能级纲图。纲图包含11/2^(-)、9/2^(-)和7/2^(-)三个激发态以及5/2^(-)_(g.s.)基态,它们由三条ΔI=1的γ跃迁连接。这种能级结构与K=5/2时强耦合转动带的特征一致。使用改进的LNPS有效相互作用(LNPSm)的大规模壳模型计算能很好地重现观测到的能级。计算表明,^(65,67)Mn的低位激发态都主要包含处于4p-4h的中子组态和1p-1h的质子组态。基于实验结果发现,在吸积中子星壳中,与质量数A=63相关的Urea中微子冷却效果比预期的要强很多,而A=65,67的冷却效果比预期的更弱。卢洪洋 刘小雨 丁兵 刘忠 P.Doornenbal A.Obertelli S.MLenzi P.M.Walker L.X.Chung B.D.Linh G.Authelet H.Baba D.Calvet F.Chateau A.Corsi A.Delbart J.M.Gheller A.Gillibert T.Isobe V.Lapoux M.Matsushita S.Momiyama T.Motobayashi M.Niikura F.Nowacki H.Otsu C.Peron A.Peyaud E.C.Pollacco J.Y.Rousse H.Sakurai M.Sasano Y.Shiga S.Takeuchi R.Taniuchi T.Uesaka H.Wang K.Yoneda 2020原子核物理评论2020,37,3:0
4High-Spin States in the N = 50 Nucleus ^(88)Sr显示文摘The Excited states of ^(88)Sr have been produced in the reaction ^(16)O(^(82)Se,4p6n)and studied using the in-beam γ spectroscopy techniques.Two high-spin level structures have been observed and established up to 8.5 MeV and 7.9 MeV excitation energy,respectively.Based on the measurements of the directional correlations ofγ-rays de-exciting oriented states and anisotropic factors ofγ-rays,spin values of the excited states have been assigned up to the highest levels observed.刘忠 T.Ishii T.Hayakawa M.Oshima Y.Toh H.Sakurai M.Notani M.Ishihara 2001Chinese Physics Letters2001,18,7:0
5利用深部非弹反应对Z≈56,N≈80区核激发态的探索性研究显示文摘通过 4 1 0MeV82 Se轰击天然Ba靶引起的深部非弹反应布居产生了类弹和类靶余核的激发态 ,利用在束γ谱学方法测量了它们的退激γ .通过γ -γ符合测量估计了类弹、类靶余核激发态的产生截面 ,在多个类靶余核中观测到了新γ跃迁 ,并建立了136 Ba的新能级纲图 ,说明利用深部非弹反应研究Z≈ 56,N≈ 80区高自旋态是有效。刘忠 M.Oshima T.Ishii T.Hayakawa Y.Toh Y.Hatsukawa H.Sakurai M.Notani M.Ishihara 2001高能物理与核物理2001,25,9:0
6New Measurements for ^(8)He Excited States显示文摘Breakup reactions of the double borromean nucleus ^(8)He were measured at 82.3 MeV/u on CH2 and C targets.The coincident detection of two decaying neutrons and the high performance for neutron cross talk rejection are realized in this experiment.The relative energy spectrum for ^(8)He was reconstructed with good statistics.The spectrum exhibits a structure of two resonant peaks,one at an excitation energy of about 3.0 and the other at about 4.14 MeV,respectively.Substantially larger cross section for the first resonance is observed in comparison to the results reported previously.肖军 叶沿林 曹中鑫 江栋兴 郑涛 华辉 李智焕 李湘庆 葛愉成 楼建玲 庞丹阳 吕林辉 李奇特 乔锐 游海波 陈瑞九 H.Sakurai H.Otsu M.Nishimura S.Sakaguchi H.Baba Y.Togano K.Yoneda 李琛 王硕 王赫 李阔昂 Y.Nakayama Y.Kondo S.Deguchi Y.Satou K.H.Tshoo 2012Chinese Physics Letters2012,29,8:0
7High-spin States in N=50 Nucleus ^(88)Sr显示文摘LiuZhong H.Sakurai2000近代物理研究所和兰州重离子加速器实验室年报:英文版2000,,1:0
8A Test Experiment for Study of Excited States in Z~56, N~80 Nuclei via Deep Inelastic Reaction显示文摘LiuZhong H.Sakurai2000近代物理研究所和兰州重离子加速器实验室年报:英文版2000,,1:0
9中子数 N=50核^(88)Sr的高自旋态显示文摘在用82Se束流和天然 Ba靶之间的深部非弹反应研究类靶余核激发态时,Ba靶严重氧化,88Sr的激发态由16O与82Se之间的融合蒸发反应产生.通过在束γ谱学方法测量了88 Sr的退激 γ射线,提取了γ跃迁的 DCO系数和角分布各向异性因子,对所有能级进行了自旋指定.在已知能级之上观测到了两个高自旋能级结构,自旋、激发能分别达到13h,8520keV和12h,7909keV.根据能级衰变特征和邻近N=50同中子素的能级结构系统性,对高自旋态的组态进行了讨论.刘忠 M.Oshima T.Ishii T.Hayakawa Y.Toh Y.Hatsukawa H.Sakurai M.Notani M.Ishihara 2001高能物理与核物理2001,25,10:0
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