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    • 1. 发明专利
    • Analyte information acquisition device and method
    • 分析信息获取装置和方法
    • JP2014112078A
    • 2014-06-19
    • JP2013209339
    • 2013-10-04
    • Canon Incキヤノン株式会社
    • ONOUCHI TOSHIHIKOYAMAGUCHI SAYURI
    • G01N21/3586
    • G01N21/3586
    • PROBLEM TO BE SOLVED: To provide an analyte information acquisition device and method capable of performing information acquisition such as detection of a specific part such as an abnormal part of an analyte at a sufficient sensitivity using a terahertz wave.SOLUTION: The analyte information acquisition device includes a generation section 29, a detection section 17, and a processing section 30. The generation section generates a terahertz wave to be radiated to an analyte in a plurality of states including a state in which a target aimed at a specific part or other than the specific part in the analyte 10 is introduced to the analyte. The detection section detects the terahertz wave propagating from the analyte 10, and outputs a signal. The processing section acquires information of the analyte 10 on the basis of the signal detected by the detection section and data including the information related to a feature part of the wavelength spectrum of the target.
    • 要解决的问题:提供一种分析物信息获取装置和方法,其能够使用太赫兹波以足够的灵敏度来执行信息获取,例如检测分析物的异常部分的特定部分。解决方案:分析物信息获取装置 包括生成部分29,检测部分17和处理部分30.生成部分生成要被分解成多个状态的被分析物的太赫兹波,该多个状态包括目标在特定部分以外的目标的状态 分析物10中的特定部分被引入分析物。 检测部检测从分析物10传播的太赫兹波,并输出信号。 处理部根据由检测部检测出的信号和包含与目标的波长谱的特征部分有关的信息的数据,取得分析物10的信息。
    • 2. 发明专利
    • Sensor apparatus
    • 传感器装置
    • JP2013190311A
    • 2013-09-26
    • JP2012056533
    • 2012-03-13
    • Canon Incキヤノン株式会社
    • ONOUCHI TOSHIHIKO
    • G01N21/35G01N21/27
    • G01J5/0818G01J3/108G01J3/42G01N21/3581G01N21/3586G01N21/553
    • PROBLEM TO BE SOLVED: To provide a technique of a desired sensor apparatus using a total reflection optical system capable of utilizing evanescent waves to obtain high resolution because a sensor apparatus using terahertz waves is difficult to obtain high resolution when using a spatial coupling system.SOLUTION: The sensor apparatus includes: an optical waveguide including an electro-optic crystal 1 for propagating light; a coupler 3 arranged adjacently to the optical waveguide to propagate a terahertz wave generated from the electro-optic crystal by propagating light through the optical waveguide; and a detector 7 for detecting the terahertz wave propagated through the coupler or the light propagated through the optical waveguide. The terahertz wave is totally reflected on a portion of the coupler, which is opposed to a portion adjacent to the optical waveguide, and is propagated through the optical waveguide, and on the total reflection part, the terahertz wave causes to interact with a test object 6 arranged on the total reflection part.
    • 要解决的问题:提供使用能够利用ev逝波来获得高分辨率的全反射光学系统的期望传感器装置的技术,因为使用太赫兹波的传感器装置在使用空间耦合系统时难以获得高分辨率。 传感器装置包括:包括用于传播光的电光晶体1的光波导; 耦合器3,其布置成与光波导相邻,以通过将光传播通过光波导传播从电光晶体产生的太赫兹波; 以及检测器7,用于检测通过耦合器传播的太赫兹波或通过光波导传播的光。 太赫波在耦合器的与光波导相邻的部分相对的部分上被全反射,并且通过光波导传播,并且在全反射部分上,太赫兹波导致与测试对象相互作用 6布置在全反射部分上。
    • 3. 发明专利
    • Specimen information obtaining apparatus and method
    • 样本信息获取装置和方法
    • JP2009229323A
    • 2009-10-08
    • JP2008076865
    • 2008-03-24
    • Canon Incキヤノン株式会社
    • KASAI SHINTAROONOUCHI TOSHIHIKO
    • G01N21/35G01N21/3586
    • PROBLEM TO BE SOLVED: To implement a measurement at the high reliability and the high repeatability without applying an excess pressure to a specimen in an apparatus and a method for obtaining information on the specimen using a terahertz wave. SOLUTION: The apparatus for obtaining the information on the specimen 102 using the terahertz wave comprises: a generation section; a propagation section; an adjustment means 103; a detection section 104; and control sections 105-108. The generation section generates the terahertz wave. The propagation section propagates the terahertz wave from the generation section. The adjustment means 103 adjusts a filled state of the specimen 102 in the propagation section. The detection section 104 detects the terahertz wave from the propagation section. The control sections determine the filled state of the specimen 102 adjusted by the adjustment means 103, and control the adjustment means 103 based on a signal change in the terahertz wave detected by the detection section 104 when the adjustment means 103 adjusts a filled state of the specimen 102. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:在设备中不对试样施加过大的压力,以高可靠性和高重复性实现测量,以及使用太赫兹波获取样品信息的方法。 解决方案:用于获得使用太赫兹波的样本102上的信息的装置包括:生成部分; 传播部分; 调整装置103; 检测部104; 和控制部105-108。 生成部分产生太赫兹波。 传播部分传播来自生成部分的太赫兹波。 调整装置103调节传播部分中样本102的填充状态。 检测部104从传播部检测太赫兹波。 控制部分确定由调节装置103调整的样本102的填充状态,并且当调节装置103调节装置103的填充状态时,基于由检测部分104检测到的太赫兹波中的信号变化来控制调节装置103 标本102.版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Optical pulse compressor
    • 光学脉冲压缩机
    • JP2009180812A
    • 2009-08-13
    • JP2008017843
    • 2008-01-29
    • Canon Incキヤノン株式会社
    • KATAGIRI TAKASHIONOUCHI TOSHIHIKOFURUSAWA KENTARO
    • G02F1/365
    • H01S3/0057G02B6/02214
    • PROBLEM TO BE SOLVED: To provide a pulse compressor in which the generation of pedestal components accompanied by pulse compression is reduced or suppressed.
      SOLUTION: The optical pulse compressor includes a chirp part 1 including a normal dispersion fiber which provides a positive chirp to an incident pulse, and a dispersion compensation part 2 including an anomalous dispersion fiber. A nonlinear coefficient and an absolute value of a second-order group velocity dispersion of the anomalous dispersion fiber which constitute the dispersion compensation part 2 is set such that a soliton order becomes one or more. Therein, a fiber length of anomalous dispersion fiber is equal to or smaller than the length required for optical soliton formation.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种脉冲压缩机,其中伴随着脉冲压缩的基座部件的产生被减少或抑制。 解决方案:光脉冲压缩机包括线性调频部分1,其包括向入射脉冲提供正啁啾的正常色散光纤和包括异常色散光纤的色散补偿部分2。 构成色散补偿部分2的异常色散光纤的二次组速度色散的非线性系数和绝对值被设定为使得孤子阶数成为一个或多个。 其中,异常色散光纤的纤维长度等于或小于光孤子形成所需的长度。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Inspection device
    • 检查装置
    • JP2008224436A
    • 2008-09-25
    • JP2007063613
    • 2007-03-13
    • Canon Incキヤノン株式会社
    • KASAI SHINTAROITSUJI TAKEAKIONOUCHI TOSHIHIKO
    • G01N21/35G01N21/3577G01N21/3586
    • G01N21/3581G01N21/17G01N21/1717G01N21/3563
    • PROBLEM TO BE SOLVED: To provide an inspection device capable of inspecting, even a trace amount of a specimen with high sensitivity, by making a specimen and an electromagnetic waves interact with each other a plurality number of times. SOLUTION: The inspection device is constituted so as to detect the data of the specimen 112 from the change in the propagation state of the electromagnetic wave, produced by a plurality of number of times of the interactions of the specimen 112 by electromagnetic waves and has a transmission passage 16; an electromagnetic wave supply detection part 111 for supplying the electromagnetic wave to the transmission passage 16 and detecting the electromagnetic waves, a reflecting part 110 for reflecting the electromagnetic waves propagated through the transmission passage 16 and an inspection part 113, wherein the specimen 112 is installed between the electromagnetic wave supply detection part and the reflection part 110. The transmission passage 16, the reflecting part 110 and the inspection part 113 are formed on the same substrate 11. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够通过使试样和电磁波多次相互作用而能够检测甚至微量的高灵敏度的试样的检查装置。 解决方案:检查装置构成为从电磁波的传播状态的变化中检测出样本112的数据,由电磁波的多个样本112的相互作用产生 并具有传递通道16; 用于将电磁波提供给传输通道16并检测电磁波的电磁波供应检测部分111,用于反射通过传输通道16传播的电磁波的反射部分110和检查部分113,其中样本112被安装 电磁波供给检测部和反射部110之间。传输通道16,反射部110和检查部113形成在同一基板11上。版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Oscillation element
    • 振荡元素
    • JP2008177551A
    • 2008-07-31
    • JP2007318581
    • 2007-12-10
    • Canon Incキヤノン株式会社
    • SEKIGUCHI RYOTAONOUCHI TOSHIHIKO
    • H01S1/02
    • H01S1/02B82Y20/00H01S5/06255H01S5/06256H01S5/2213H01S5/227H01S5/3027H01S5/3031H01S5/3402H01S5/3422
    • PROBLEM TO BE SOLVED: To provide an oscillation element of which the wavelength variable width is relatively wide, wavelength sweeping velocity is relatively high, and an oscillation wavelength is long. SOLUTION: The oscillation element comprises a gain medium 103 which has a gain to an electromagnetic wave to be oscillated, resonator structures 104 and 105 for resonating electromagnetic waves, energy injecting devices 122A and 121 which inject pumping energy to the gain medium 103. The gain medium 103 is put between a first negative dielectric constant medium 102 and a second negative dielectric constant medium 101 in each of which the real part of dielectric constant with respect to the electro magnetic wave is negative. At least one of these has electric field applying devices 122B and 121 for applying electric fields to change a depletion region formed at the boundary between the gain medium 103. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供波长可变宽度相对较宽的振荡元件,波长扫描速度相对较高,振荡波长较长。 解决方案:振荡元件包括增益介质103,其具有对要振荡的电磁波的增益,用于谐振电磁波的谐振器结构104和105,将能量注入装置122A和121注入到增益介质103的能量 增益介质103放在第一负介电常数介质102和第二负介电常数介质101之间,其中相对于电磁波的介电常数的实部为负。 这些中的至少一个具有用于施加电场以改变形成在增益介质103之间的边界处的耗尽区的电场施加装置122B和121.权利要求:(C)2008,JPO&INPIT
    • 8. 发明专利
    • Inspecting apparatus and method
    • 检查装置和方法
    • JP2007304084A
    • 2007-11-22
    • JP2007023610
    • 2007-02-02
    • Canon Incキヤノン株式会社
    • KASAI SHINTAROONOUCHI TOSHIHIKOITSUJI TAKEAKI
    • G01N21/35G01N21/3577G01N21/3586
    • G01N21/3581G01N21/03G01N21/3577G01N22/00G01N2021/0346G01N2021/035
    • PROBLEM TO BE SOLVED: To provide an inspecting apparatus and an inspecting method, capable of relatively accurately controlling the position of a liquid object to a transmission path. SOLUTION: The inspecting apparatus for detecting information of the liquid object or sample includes the transmission path 101; an electromagnetic wave supply unit 13a for supplying an electromagnetic wave contained within a frequency range of 30 GHz to 30 THz; an electromagnetic wave detection unit 13b for detecting the electromagnetic wave propagated in the transmission path 101; and an infiltrative holding member 17 for infiltration and holding of the liquid object. The infiltrative holding member 17 is set at a location containing at least a portion in which an electric field distribution of the electromagnetic wave propagating along the transmission path 101 extends. The member 17 holds the liquid object by capillary force or the like, and regulates the distribution of the liquid object. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够相对精确地控制液体对传播路径的位置的检查装置和检查方法。 检测液体或样品信息的检查装置包括传输路径101; 用于提供包含在30GHz至30Hz的频率范围内的电磁波的电磁波供给单元13a; 用于检测在传输路径101中传播的电磁波的电磁波检测单元13b; 以及用于渗透和保持液体物体的渗透保持构件17。 渗透保持构件17设置在至少包含沿着传播路径101传播的电磁波的电场分布延伸的部分的位置。 构件17通过毛细管力等保持液体,并且调节液体物体的分布。 版权所有(C)2008,JPO&INPIT
    • 10. 发明专利
    • Sensing apparatus
    • 感应装置
    • JP2007078621A
    • 2007-03-29
    • JP2005270050
    • 2005-09-16
    • Canon Incキヤノン株式会社
    • ONOUCHI TOSHIHIKOSEKIGUCHI RYOTA
    • G01N21/27G01N21/35G01N21/3577G01N21/3586G01N21/41
    • PROBLEM TO BE SOLVED: To provide a relatively highly sensitive sensing device or method for acquiring information on a specimen using electromagnetic wave including a frequency region in a frequency region of 30 GHz-30 THz. SOLUTION: The sensing device has an electric conductor section 2, a periodic structure 15 arranged in a part or near the electric conductor section 2, and a specimen holding section for holding the specimen 3 in order to acquire the information on the specimen using the electromagnetic wave including the frequency region in the frequency region of 30 GHz-30 THz. Variation by the specimen 2 of the condition where surface plasmon resonance occurs near the specimen holding section when the electromagnetic wave is made to interact with the electric conductor section 2 is detected, and the information on the specimen 2 is acquired. This information acquiring means comprises coupling means 4, 6a and 6b for generating and coupling electromagnetic wave to the electric conductor section 2, and detecting means 5, 6c and 6d for detecting the electromagnetic wave after making the electromagnetic wave interact with electric conductor section 2. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种相对高灵敏度的感测装置或方法,用于使用包括在30GHz-30THz的频率区域中的频率区域的电磁波来获取关于样本的信息。 解决方案:感测装置具有电导体部分2,布置在导电体部分2的一部分或附近的周期性结构15,以及用于保持试样3以便获取关于试样的信息的试样保持部分 使用包括在30GHz-30THz的频率范围内的频率区域的电磁波。 检测当使电磁波与电导体部2相互作用时,在试样保持部附近发生表面等离子体共振的状态的试样2的变化,获取关于试样2的信息。 该信息获取装置包括用于产生电磁波并将电磁波耦合到电导体部分2的耦合装置4,6a和6b;以及用于在使电磁波与导体部分2相互作用之后检测电磁波的检测装置5,6c和6d。 版权所有(C)2007,JPO&INPIT