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    • 1. 发明授权
    • Property measuring device for object to be measured and property measuring method for object to be measured
    • 要测量的物体的物体测量装置和待测物体的物性测量方法
    • US09551688B2
    • 2017-01-24
    • US14233696
    • 2012-07-10
    • Kenji Ikushima
    • Kenji Ikushima
    • G01N9/04G01N27/72G01N29/04G01N29/24G01N29/34
    • G01N27/725G01N29/043G01N29/2418G01N29/2431G01N29/346
    • [Problem to be Solved] To provide a property measuring device for measuring a measurement object, which can highly reliably extract an electric signal serving as the measurement object from an electromagnetic field noise or the like generated by an acoustic wave generating source even if the acoustic wave is a continuous wave, while a high spatial resolution is maintained, by using an acoustic wave as a properly measuring means for measuring an object and method thereof.[Means for Solving the Problem] A property measuring device 100 for measuring a measurement object of the present invention includes: an acoustic wave emitting portion 40 arranged away from a measurement object 90 and emitting an amplitude-modulated acoustic wave; a receiver 50 for receiving an electromagnetic field generated when the acoustic wave is emitted to the measurement object 90; and a measuring portion 60 for extracting at least one type of properties selected from a group consisting of an electric property, a magnetic property, an electromechanical property, and a magnetomechanical property of the measurement object 90, based on at least one measurement selected from a group consisting of measurements of a strength, a phase, and a frequency of the electromagnetic field.
    • 解决问题的手段本发明的测量对象物的测量装置100包括:远离测量对象90布置并发出调幅声波的声波发射部分40; 用于接收当声波发射到测量对象90时产生的电磁场的接收器50; 以及测量部分60,用于从至少一种测量对象中选出的至少一种测量值,从测量对象90的电性质,磁特性,机电特性和磁力机械性质中提取至少一种类型的特性, 由电磁场的强度,相位和频率的测量组成的组。
    • 2. 发明申请
    • PROPERTY MEASURING DEVICE FOR OBJECT TO BE MEASURED AND PROPERTY MEASURING METHOD FOR OBJECT TO BE MEASURED
    • 要测量的物体测量装置和要测量的物性测量方法
    • US20140150555A1
    • 2014-06-05
    • US14233696
    • 2012-07-10
    • Kenji Ikushima
    • Kenji Ikushima
    • G01N27/72
    • G01N27/725G01N29/043G01N29/2418G01N29/2431G01N29/346
    • [Problem to be Solved] To provide a property measuring device for measuring a measurement object, which can highly reliably extract an electric signal serving as the measurement object from an electromagnetic field noise or the like generated by an acoustic wave generating source even if the acoustic wave is a continuous wave, while a high spatial resolution is maintained, by using an acoustic wave as a properly measuring means for measuring an object and method thereof.[Means for Solving the Problem] A property measuring device 100 for measuring a measurement object of the present invention includes: an acoustic wave emitting portion 40 arranged away from a measurement object 90 and emitting an amplitude-modulated acoustic wave; a receiver 50 for receiving an electromagnetic field generated when the acoustic wave is emitted to the measurement object 90; and a measuring portion 60 for extracting at least one type of properties selected from a group consisting of an electric property, a magnetic property, an electromechanical property, and a magnetomechanical property of the measurement object 90, based on at least one measurement selected from a group consisting of measurements of a strength, a phase, and a frequency of the electromagnetic field.
    • [待解决的问题]提供一种用于测量测量对象的性能测量装置,其可以从由声波发生源产生的电磁场噪声等高度可靠地提取用作测量对象的电信号,即使声学 波是连续波,而通过使用声波作为用于测量物体的适当测量装置和方法,保持高空间分辨率。 解决问题的手段本发明的测量对象物的测量装置100包括:远离测量对象90布置并发出调幅声波的声波发射部分40; 用于接收当声波发射到测量对象90时产生的电磁场的接收器50; 以及测量部分60,用于从至少一种测量对象中选出的至少一种测量值,从测量对象90的电性质,磁特性,机电特性和磁力机械性质中提取至少一种类型的特性, 由电磁场的强度,相位和频率的测量组成的组。
    • 3. 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。
    • 7. 发明申请
    • Infrared focusing device
    • 红外聚焦装置
    • US20050254121A1
    • 2005-11-17
    • US10519078
    • 2003-04-22
    • Susumu KomiyamaKenji Ikushima
    • Susumu KomiyamaKenji Ikushima
    • G01Q60/18G01Q60/22G02B13/14
    • G01Q60/22
    • An infrared light condensing apparatus is provided that permits an infrared light of several tens microns in wavelength to be focused efficiently at a microfine area of submicron or less and also a near-field from a microfine area of submicron or less to be taken out efficiently and at the same time permits a scanning image to be obtained. It includes a solid immersion lens (2) made of a medium of high index of refraction for coupling an incident light (8) or an outgoing light (9) to an antenna efficiently, a measured specimen (6) disposed on a base plane (3) of the solid immersion lens (2), the antenna (4), e.g., a planar dipole antenna (14) or a planar slot antenna (16), that is disposed away from the base plane (3) at a distance that is ¼ of an effective wavelength of the light for causing the light to geometrically resonate therewith, a probe (4b) in the form of a rod-like conductor having a sharply point end projecting from the antenna (4), and a position control means such as a triaxial XYZ mechanical stage (23) for controlling the position of the probe (4b) with the intermediary of a cantilever (5). Coupling the incident light (8) or the outgoing light (9) to the antenna (4) is made through the high dielectric constant medium side and an antenna capable of bringing about geometrical resonance is used to enhance the efficiency.
    • 提供一种红外聚光装置,其允许波长为几十微米的红外光有效地聚焦在亚微米或更小的微细区域以及亚微米或更小的微细区域的近场,以被有效地取出; 同时允许获得扫描图像。 它包括由高折射率介质构成的固体浸没透镜(2),用于将入射光(8)或出射光(9)有效地耦合到天线,设置在基础平面上的测量样品(6) 固体浸没透镜(2)的天线(4),例如平面偶极天线(14)或平面缝隙天线(16),其远离基底平面(3)远离 是用于使光与其几何谐振的光的有效波长的1/4,具有从天线(4)突出的尖锐点的棒状导体形式的探针(4b)和位置控制装置 例如用于通过悬臂(5)的中间来控制探针(4b)的位置的三轴XYZ机械台(23)。 通过高介电常数介质侧将入射光(8)或出射光(9)耦合到天线(4),并且使用能够产生几何谐振的天线来提高效率。