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    • 7. 发明申请
    • Polarization controlling apparatus and polarization operation apparatus
    • 极化控制装置和极化操作装置
    • US20070242340A1
    • 2007-10-18
    • US11529347
    • 2006-09-29
    • Kazuo HironishiNobuhiro FukushimaJens Rasmussen
    • Kazuo HironishiNobuhiro FukushimaJens Rasmussen
    • G02F1/09
    • G02F1/0136G02F1/09G02F2001/0139G02F2201/17
    • A polarization controlling apparatus is disclosed, which enhances the degree of freedom in apparatus design.The polarization controlling apparatus includes a permanent magnet itself or a permanent magnet to which a part capable of being magnetized is applied, an electromagnet capable of changing the magnitude of a magnetic field to be generated thereby, and a Faraday rotation effect element, disposed at a position at which an interaction magnetic field produced by an interaction between a magnetic field generated by the permanent magnet and a magnetic field generated by the electromagnet acts, for producing a Faraday rotation effect on inputted light by means of the interaction magnetic field. The magnitude of the interaction magnetic field in the Faraday rotation effect element is varied by a magnetic field component generated by the electromagnet to vary the amount of the Faraday rotation effect to be had on the inputted light.
    • 公开了一种提高了设备​​设计自由度的偏振控制装置。 偏振控制装置包括永磁体本身或永久磁铁,能够被磁化的部分被施加到其上,能够改变由此产生的磁场的大小的电磁体以及法拉第旋转效应元件 由永磁体产生的磁场和由电磁体产生的磁场之间的相互作用产生的相互作用磁场作用的位置,用于通过相互作用磁场产生对输入的光的法拉第旋转效应。 法拉第旋转效应元件中的相互作用磁场的大小由电磁体产生的磁场分量变化,以改变对输入光的法拉第旋转效应的量。
    • 8. 发明授权
    • Variable optical filter
    • 可变光学滤波器
    • US07050216B2
    • 2006-05-23
    • US11009991
    • 2004-12-10
    • Nobuhiro FukushimaHidenori NakadaTsugio TokumasuYuko Ota
    • Nobuhiro FukushimaHidenori NakadaTsugio TokumasuYuko Ota
    • G02F1/09
    • G02F1/09G02F2203/055
    • A variable optical filter comprises a first polarizer, a first phase difference element operable to generate a phase difference, a variable Faraday rotator operable to impart a variable Faraday rotation, a second phase difference element operable to generate a phase difference, and a second polarizer, wherein said polarizers, said variable Faraday rotator, and said phase difference elements are arranged in the mentioned order along the optical axis, and wherein when the angles formed by the optic axes of said first and second phase difference elements and the transmitted polarization azimuth of the first polarizer are assumed respectively to be φ1 and φ2, these φ1 and φ2 are set to different angles.
    • 可变光学滤波器包括第一偏振器,可操作以产生相位差的第一相位差元件,可操作以赋予可变法拉第旋转的可变法拉第旋转器,可操作以产生相位差的第二相位差元件和第二偏振器, 其中所述偏振器,所述可变法拉第旋转器和所述相位差元件沿着光轴以所述次序布置,并且其中当由所述第一和第二相位差元件的光轴和所述第一和第二相位差元件的透射偏振方位角形成的角度 假设第一偏振器分别被假设为phi1和φ2,这些phi1< 1< 2>和< 2>被设置为 不同角度
    • 9. 发明授权
    • Faraday rotator
    • 法拉第旋转器
    • US06392784B1
    • 2002-05-21
    • US09577339
    • 2000-05-24
    • Seiichi IkedaNobuhiro FukushimaHirohiko Sonada
    • Seiichi IkedaNobuhiro FukushimaHirohiko Sonada
    • G02F109
    • G02F1/09G02F2201/16
    • An object of the invention is to provide a small size Faraday rotator which is easy to produce and enables reliable reduction of temperature dependence of the Faraday rotation angle, by defining the crystal orientation and arrangement order of each Faraday element when three or more Faraday elements are used. For this purpose, a Faraday rotator of the present invention comprises: a Faraday element section being composed of a plurality of Faraday elements, a permanent magnet for applying a magnetic field to each Faraday element in a parallel direction to an optical axis direction, and an electromagnet for applying a variable magnetic field in a perpendicular direction to the optical axis direction, wherein each Faraday element is arranged such that the crystal orientation of each is perpendicular to a light beam direction, and crystal orientations of adjacent Faraday elements are opposed to each other.
    • 本发明的目的是提供一种小尺寸的法拉第旋转器,其容易制造,并且通过在三个或更多法拉第元件为三个或更多个法拉第元件时限定每个法拉第元件的晶体取向和排列顺序,可以可靠地降低法拉第旋转角度的温度依赖性 用过的。 为此,本发明的法拉第旋转器包括:法拉第元件部分,其由多个法拉第元件组成,永磁体用于沿与光轴方向平行的方向向每个法拉第元件施加磁场;以及 用于在与光轴方向垂直的方向上施加可变磁场的电磁体,其中每个法拉第元件布置成使得每个法拉第元件的晶体取向垂直于光束方向,并且相邻的法拉第元件的晶体取向彼此相对 。