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    • 71. 发明授权
    • Optical memory medium
    • 光存储介质
    • US5654131A
    • 1997-08-05
    • US595097
    • 1996-02-01
    • Masamichi FujihiraHiroshi MuramatsuNorio ChibaTatsuaki Ataka
    • Masamichi FujihiraHiroshi MuramatsuNorio ChibaTatsuaki Ataka
    • G01Q20/02G01Q20/04G01Q60/26G11B7/12G11B7/135G11B7/244G11B7/253G11B9/00G11B11/00G11B7/24
    • G11B7/12B82Y10/00G11B11/007G11B7/1384G11B7/244G11B7/2531G11B9/1463G01Q80/00Y10S430/146Y10S430/163
    • There is provided an optical memory medium comprising a flat plate modified on the surface thereof by a photolytic residual group, an optical recording apparatus comprising an optical probe having a microscopic aperture on the leading end thereof, a light source, X-Y-Z position control means, and a controller for controlling the apparatus as whole and an apparatus for reading the optical memory medium comprising the optical memory medium, a friction detecting probe, an X-Y-Z position control means and a controller for controlling the apparatus as a whole. Further, information is written and read with high density less than the wavelength of light using an apparatus for writing to and reading from an optical memory piezoelectric medium comprising the optical memory piezoelectric medium constituted by a piezoelectric element modified on the surface thereof by a photolytic residual group, an optical probe having a microscopic aperture on the leading end thereof, a light source, an X-Y-Z position control means, a means for measuring the resonance characteristics of the piezoelectric element and a controller for controlling the apparatus as a whole.
    • 提供了一种光学存储介质,其包括通过光解残留组在其表面上改性的平板,光学记录装置,包括在其前端具有微小孔的光学探针,光源,XYZ位置控制装置和 用于整体控制装置的控制器和用于读取包括光学存储介质的光学存储介质的装置,摩擦检测探针,XYZ位置控制装置和用于整体控制装置的控制器。 此外,使用用于写入和读取由光学存储器压电介质构成的光学存储器压电介质的装置,以比光的波长高的密度来写入和读取信息,该光存储器压电介质由其表面上由光解残留物修饰的压电元件构成 组,在其前端具有微小孔的光学探针,光源,XYZ位置控制装置,用于测量压电元件的谐振特性的装置和用于整体控制装置的控制器。
    • 73. 发明授权
    • Process for manufacturing DC superconducting quantum interference device
    • 制造直流超导量子干涉装置的方法
    • US5306521A
    • 1994-04-26
    • US840343
    • 1992-02-24
    • Nobuhiro ShimizuKazuo ChinoneNorio Chiba
    • Nobuhiro ShimizuKazuo ChinoneNorio Chiba
    • G01R33/035H01L39/22H01L39/24
    • H01L39/2493Y10S505/817Y10S505/832Y10S505/846
    • A method of manufacturing a DC superconducting quantum interference device comprises forming an insulating film over a portion of a resistance film. A lower electrode superconducting film is formed over the resistance film and the insulating film. A barrier layer is formed on a portion of the lower electrode superconducting film. An upper electrode is formed sandwiching the barrier layer between the lower electrode superconducting film and the upper electrode, so as to form a Josephson junction. To reduce the number of manufacturing steps, the lower electrode superconducting film is photolithographically patterned and/or etched to simultaneously form an input coil, a feedback coil and the Josephson junction. In another embodiment, after forming the upper electrode, an insulating film is formed over at least a portion of the lower electrode superconducting film. A superconducting film is formed over the insulating film in contact with the upper electrode. To reduce the number of manufacturing steps, the superconducting film is photolithographically patterned and/or etched to simultaneously form a counter electrode, the input coil and the feedback coil.
    • 制造DC超导量子干涉器件的方法包括在电阻膜的一部分上形成绝缘膜。 在电阻膜和绝缘膜上形成下电极超导膜。 在下电极超导膜的一部分上形成阻挡层。 形成在下电极超导膜和上电极之间夹持阻挡层的上电极,以形成约瑟夫逊结。 为了减少制造步骤的数量,下电极超导膜被光刻图案化和/或蚀刻以同时形成输入线圈,反馈线圈和约瑟夫逊结。 在另一实施例中,在形成上电极之后,在下电极超导膜的至少一部分上形成绝缘膜。 在与上电极接触的绝缘膜上形成超导膜。 为了减少制造步骤的数量,超导薄膜被光刻图案化和/或蚀刻以同时形成对电极,输入线圈和反馈线圈。
    • 78. 发明授权
    • Scanning near-field optic/atomic force microscope
    • 扫描近场光学/原子力显微镜
    • US06229609B1
    • 2001-05-08
    • US08225756
    • 1994-04-11
    • Hiroshi MuramatsuTatsuaki AtakaMasamichi FujihiraNorio Chiba
    • Hiroshi MuramatsuTatsuaki AtakaMasamichi FujihiraNorio Chiba
    • G01B1124
    • G01Q30/02G01Q60/06G01Q60/22G01Q60/38G01Q70/02G02B6/241Y10S977/862Y10S977/863Y10S977/871Y10S977/951
    • An apparatus capable of measuring the topography and the optical characteristics of the surface of a sample at high resolution irrespective of the transmittance and the conductivity of the sample is realized. The apparatus comprises a probe, a light source for illuminating a sample with light, a photoelectric converter device and optics for receiving light transmitted through the sample or light reflected by the sample, a laser emitting laser light for detecting deflections of the probe, a condenser lens for directing the laser light to the rear surface of the probe, a detection system for detecting reflected light, a rough-motion mechanism and a fine-motion mechanism for moving the sample and the probe relative to each other, a control means for controlling the distance between the sample and the probe, and a computer for controlling the whole apparatus. The probe has a front end portion and a light-propagating body continuous with the front end portion. The front end portion and the light-propagating body are shaped like a hook. The apparatus observes the topography and the optical characteristics of the surface of the sample.
    • 实现了能够以高分辨率测量样品的表面的形貌和光学特性的装置,而与样品的透射率和导电性无关。 该装置包括探针,用光照射样品的光源,光电转换器装置和用于接收通过样品透射的光或由样品反射的光的光学器件,用于检测探针偏转的激光发射激光,冷凝器 用于将激光引导到探针的后表面的透镜,用于检测反射光的检测系统,用于使样品和探针相对于彼此移动的粗动作机构和细微运动机构;控制装置, 样品与探针之间的距离,以及用于控制整个装置的计算机。 探针具有与前端部连续的前端部和光传播体。 前端部分和光传播体形状如钩。 该装置观察样品表面的形貌和光学特性。
    • 80. 发明授权
    • Highly sensitive magnetic field detector using low-noise DC SQUID
    • 高灵敏度磁场检测器采用低噪声直流SQUID
    • US5596273A
    • 1997-01-21
    • US306411
    • 1994-09-15
    • Satoru YabeNorio ChibaSatoshi Nakayama
    • Satoru YabeNorio ChibaSatoshi Nakayama
    • G01R33/035H01L39/22
    • G01R33/0358Y10S505/846
    • DC-SQUID includes an input coil for transmitting an external magnetic field signal as a signal current from a detection coil, a washer coil to which the signal current is input as a signal magnetic flux, two Josephson devices for converting the signal magnetic flux transmitted to the washer coil to a signal voltage, shunt resistors and a damping resistor which are connected to each of the Josephson devices in parallel and in series respectively to extinguish the hysteresis of the current-voltage characteristic, and a feedback modulation coil to which a feedback and modulation current is transmitted from an external control circuit. The feedback modulation coil is arranged so as to linearly traverse over the upper portion or lower portion of the washer coil. The mutual inductance Mms between a washer coil and a feedback modulation coil is set to be smaller than the self inductance Lw of the washer coil, to thereby making the magnetic field sensitivity excellent, the SN ratio of an DS-SQUID is improved, and RF noises are reduced.
    • DC-SQUID包括一个输入线圈,用于传输来自检测线圈的信号电流的外部磁场信号,输入信号电流的清洗线圈作为信号磁通;两个约瑟夫逊器件,用于将传输的信号磁通转换为 将所述洗涤器线圈分配到信号电压,并联电阻器和阻尼电阻器,所述阻尼电阻器并联并且分别并联连接并分别串联以消除所述电流 - 电压特性的滞后,以及反馈调制线圈,反馈和 调制电流从外部控制电路发送。 反馈调制线圈布置成线性地横过清洗线圈的上部或下部。 将洗涤器线圈和反馈调制线圈之间的互感Mms设定为小于洗涤器线圈的自感Lw,从而使得磁场灵敏度优异,DS-SQUID的SN比提高,RF 噪音减少。