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    • 2. 发明申请
    • THERMAL STORAGE MEDIUM COMPOSITION AND THERMAL STORAGE MEDIUM
    • 热存储介质组合物和热存储介质
    • US20120261607A1
    • 2012-10-18
    • US13518448
    • 2010-12-24
    • Masashi ShimakageTakuya SanoToshiyuki HayakawaSusumu KomiyamaJunji Koujina
    • Masashi ShimakageTakuya SanoToshiyuki HayakawaSusumu KomiyamaJunji Koujina
    • C09K5/02
    • C09K5/063C08K5/005C08K5/01C08L53/025F28D20/02C08L53/00
    • [Object] The invention provides a thermal storage medium composition capable of forming a thermal storage medium which is free from phase separation or liquid phase bleeding and is excellent in shape retention properties even at or above the maximum crystal transition temperature of a paraffin compound and further exhibits excellent fluidity when being shaped.[Solution] A thermal storage medium composition includes 100 parts by mass of a hydrogenated diene copolymer and 50 to 4000 parts by mass of a paraffin compound, the hydrogenated diene copolymer being a conjugated diene copolymer that is obtained by hydrogenating a block copolymer which includes a block (A) that contains structural units (a-1) derived from a conjugated diene compound and has a vinyl bond content of not more than 20 mol %, and a block (B) that contains structural units (b-1) derived from a conjugated diene compound and has a vinyl bond content of 30 to 95 mol %, the hydrogenation ratio with respect to the double bonds derived from the conjugated diene compounds being not less than 90%.
    • 本发明提供能够形成不含相分离或液相渗出的热存储介质的热存储介质组合物,即使在石蜡化合物的最大晶体转变温度以上也具有优异的形状保持性,并且进一步 成型时表现出优异的流动性。 [解决方案]热存储介质组合物包含100质量份氢化二烯共聚物和50〜4000质量份石蜡复合物,氢化二烯共聚物是通过氢化嵌段共聚物而获得的共轭二烯共聚物,所述嵌段共聚物包括 含有来自共轭二烯化合物的结构单元(a-1),乙烯基键含量为20摩尔%以下的嵌段(A)和含有不超过20摩尔%的结构单元(b-1)的嵌段(B) 共轭二烯化合物的乙烯基键含量为30〜95摩尔%,相对于来自共轭二烯化合物的双键的氢化率为90%以上。
    • 9. 发明授权
    • Infrared focusing device
    • 红外聚焦装置
    • US07391564B2
    • 2008-06-24
    • US10519078
    • 2003-04-22
    • Susumu KomiyamaKenji Ikushima
    • Susumu KomiyamaKenji Ikushima
    • G02B13/14
    • G01Q60/22
    • An infrared light condensing apparatus that focuses an infrared light of several tens microns in wavelength at a microfine area of submicron or less and also a near-field from a microfine area of submicron or less, and permits a scanning image to be obtained. It includes a solid immersion lens including a medium of high index of refraction for coupling an incident light or an outgoing light to an antenna, a measured specimen disposed on a base plane of the solid immersion lens, an antenna disposed away from the base plane at a distance ¼ of an effective wavelength of the light for causing the light to geometrically resonate therewith, a rod-like conductive probe having a sharply point end projecting from the antenna, and a position control means such as a triaxial XYZ mechanical stage for controlling the position of the probe with the intermediary of a cantilever.
    • 一种红外聚光装置,其聚焦在亚微米以下的微细亚微米以下的微细区域的波长为几十微米的红外光,也可以从亚微米以下的微细亚区域接近近场,可以获得扫描图像。 它包括固体浸没透镜,其包括用于将入射光或出射光耦合到天线的高折射率介质,设置在固体浸没透镜的基面上的测量样本,远离基面的天线 用于使光与其几何谐振的光的有效波长的距离¼,具有从天线突出的尖锐点的棒状导电探针,以及诸如三轴XYZ机械台的位置控制装置,用于控制 探头与悬臂中间位置。
    • 10. 发明授权
    • Millimeter wave and far-infrared detector
    • 毫米波和远红外探测器
    • US06627914B1
    • 2003-09-30
    • US09763603
    • 2001-02-26
    • Susumu KomiyamaAstafiev OlegAntonov VladimirHiroshi HiraiTakeshi Kutsuwa
    • Susumu KomiyamaAstafiev OlegAntonov VladimirHiroshi HiraiTakeshi Kutsuwa
    • H01L2906
    • H01Q9/28B82Y10/00H01L31/02325H01L31/03046H01L31/0352H01L31/101
    • An MR/FIR light detector is disclosed herein that has extraordinarily high degree of sensitivity and a high speed of response. The detector includes an MR/FIR light introducing section (1) for guiding an incident MR/FIR light (2), a semiconductor substrate (14) formed with a single-electron transistor (14) for controlling electric current passing through a semiconductor quantum dot (12) formed therein, and a BOTAI antenna (6, 6a, 6b, 6c) for concentrating the MW/FIR light (2) into a small special zone of sub-micron size occupied by the semiconductor quantum dot (12) in the single-electron transistor (14). The quantum dot (12) forming a two-dimensional electron system absorbs the electromagnetic wave concentrated efficiently, and retains an excitation state created therein for 10 nanoseconds or more, thus permitting electrons of as many as one millions in number or more to be transferred with respect to a single photon absorbed.
    • 本文公开了具有非常高的灵敏度和高响应速度的MR / FIR光检测器。 检测器包括用于引导入射MR / FIR光(2)的MR / FIR光导入部(1),形成有用于控制通过半导体量子的电流的单电子晶体管(14)的半导体衬底(14) 形成在其中的点(12)和用于将MW / FIR光(2)聚集成由半导体量子点(12)占据的亚微米尺寸的小特殊区域的BOTAI天线(6,6a,6b,6c) 单电子晶体管(14)。 形成二维电子系统的量子点(12)吸收有效集中的电磁波,并且将其中产生的激发态保持10纳秒以上,从而允许多达一百万数以上的电子与 尊重单个光子吸收。