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    • 32. 发明申请
    • STRUCTURE, MAGNETIC RECORDING MEDIUM, AND METHOD OF PRODUCING THE SAME
    • 结构,磁记录介质及其制造方法
    • US20080182014A1
    • 2008-07-31
    • US12040223
    • 2008-02-29
    • Nobuhiro YasuiRyoko HorieToru Den
    • Nobuhiro YasuiRyoko HorieToru Den
    • B05D5/12C23C14/34B05D3/00
    • G11B5/667G11B5/7325G11B5/8404G11B5/855
    • To provide a filmy structure of a nanometer size having a phase-separated structure effective for the case where a compound can be formed between two kinds of materials. A structure constituted by a first member containing a compound between an element A except both Si and Ge and SinGe1-n (where 0≦n≦1) and a second member containing one of the element A and SinGe1-n (where 0≦n≦1), in which one of the first member and the second member is a columnar member, formed on a substrate, whose side face is surrounded by the other member, the ratio Dl/Ds of an average diameter Dl in the major axis direction to an average diameter Ds in the minor axis direction of a transverse sectional shape of the columnar member is less than 5, and the element A is one of Li, Na, Mg, K, Ca, Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Rb, Sr, Y, Zr, Nb, Mo, Ru, Rh, Pd, Cs, Ba, La, Hf, Ta, W, Re, Os, Ir, Pt, Ce, Pr, Nd, Sm, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu, and B.
    • 为了提供具有相分离结构的纳米尺寸的薄膜结构,对于在两种材料之间可以形成化合物的情况是有效的。 由除了Si和Ge之外的元素A和Si(Si)1-n(其中0 <= n <1)之间的元素A之间的化合物的第一元件构成的结构, 以及包含元素A和Si N 1-n N(其中0 <= n <= 1)之一的第二元件,其中第一元件和 第二构件是形成在基板上的柱状构件,其侧面被另一构件包围,长轴方向上的平均直径D1的比D1 / Ds相对于短轴方向的平均直径Ds 柱状构件的横截面形状小于5,元素A为Li,Na,Mg,K,Ca,Sc,Ti,V,Cr,Mn,Fe,Co,Ni,Cu,Rb,Sr ,Y,Zr,Nb,Mo,Ru,Rh,Pd,Cs,Ba,La,Hf,Ta,W,Re,Os,Ir,Pt,Ce,Pr,Nd,Sm,Gd,Tb,Dy,Ho ,Er,Tm,Yb,Lu和B.
    • 33. 发明授权
    • Cobalt-platinum or iron-plantinum magnetic material containing 1% to 40% Cu, Ni or B
    • 含有1%至40%Cu,Ni或B的钴 - 铂或铁铁磁性材料
    • US07286324B2
    • 2007-10-23
    • US10813005
    • 2004-03-31
    • Nobuhiro YasuiTohru Den
    • Nobuhiro YasuiTohru Den
    • G11B5/82G11B5/66G11B5/127G11B5/33
    • G11B5/65G11B5/012G11B5/653G11B5/656G11B5/84
    • A CoPt- or FePt-alloy magnetic material in which a temperature to transform into an L10-ordered alloy is reduced and magnetic anisotropy energy is controlled, and a method for manufacturing the magnetic material are provided. In a CoPt- or FePt-alloy magnetic material obtained according to plating, at least one element of Cu, Ni and B is contained with an atomic percent equal to or more than 1% and equal to or less than 40%. A method for manufacturing a magnetic material includes a step of depositing a magnetic material in which at least one element of Cu, Ni and B is contained in a CoPt- or FePt-alloy magnetic material with an atomic percent equal to or more than 1% and equal to or less than 40%, from a plating solution, and a step of transforming the deposited magnetic material into an L10-ordered alloy according to annealing at a temperature equal to or lower than 500° C.
    • 其中转变成L1 <0> 的合金的温度降低并且磁各向异性能被控制的CoPt或FePt合金磁性材料,并且提供了制造磁性材料的方法。 在根据电镀获得的CoPt或FePt合金磁性材料中,含有等于或大于1%且等于或小于40%的原子百分比的Cu,Ni和B的至少一种元素。 一种制造磁性材料的方法包括沉积磁性材料的步骤,其中在CoPt-或FePt-合金磁性材料中含有至少一种Cu,Ni和B元素,原子百分比等于或大于1% 并且等于或小于40%;以及在等于或低于500°的温度下退火,将沉积的磁性材料转变成L1 <! - SIPO
    • 40. 发明授权
    • Radiation detecting device
    • 辐射检测装置
    • US09134437B2
    • 2015-09-15
    • US13544096
    • 2012-07-09
    • Tatsuya IwasakiNobuhiro YasuiToru Den
    • Tatsuya IwasakiNobuhiro YasuiToru Den
    • G01N23/04G01T1/202
    • G01T1/202
    • Provided is a radiation detecting device, including: a scintillator which emits light when radiation is irradiated thereto; and a photosensor array having light receiving elements for receiving the emitted light which are two-dimensionally arranged, in which: the scintillator has a phase separation structure for propagating the light emitted inside the scintillator in a light propagating direction, the phase separation structure being formed by embedding multiple columnar portions formed of a first material in a second material; the radiation is irradiated to the scintillator from a direction which is not in parallel to the light propagating direction; and the light emitted inside the scintillator is propagated through the scintillator in the light propagating direction and is received by the photosensor array which is placed so as to face an end face of the scintillator.
    • 本发明提供一种放射线检测装置,其特征在于,包括:闪光体,其在对其照射时发光; 以及具有用于接收二维布置的发射光的光接收元件的光传感器阵列,其中:闪烁体具有用于在光传播方向上传播闪烁体内的光的相分离结构,形成相分离结构 通过在第二材料中嵌入由第一材料形成的多个柱状部分; 辐射从不与光传播方向平行的方向照射到闪烁体; 并且在闪烁体内发射的光在光传播方向上传播通过闪烁体,并被放置成面对闪烁体的端面的光电传感器阵列接收。