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    • 1. 发明授权
    • Assembly and device for optical beam transformation
    • 光束转换的装配和装置
    • US06471372B1
    • 2002-10-29
    • US09429806
    • 1999-10-29
    • Vitalij LissotschenkoAlexei Mikhailov
    • Vitalij LissotschenkoAlexei Mikhailov
    • F21V500
    • G02B6/4206G02B3/005G02B3/0062G02B6/425G02B19/0014G02B19/0052G02B27/0961G02B27/0966
    • Assembly for optical beam transformation, which is useful for imaging a light source (1) or several light sources onto the front face of an optical fiber (7), comprising at least one light source (1) that is capable of emitting at least one beam of light (9) and further comprising one imaging element (2) and at least one device (3) for optical beam transformation, the imaging element (2) being able to image the at least one beam of light (9) emitted from the at least one light source onto the at least one device (3) for optical beam transformation through which the at least one beam of light can at least partially pass and the at least one device (3) for optical beam transformation being able to rotate the at least one beam of light (9) passing through said device at least in sections about the direction of propagation (z) of the respective section of the beam(s) of light by an angle of about 90°, the device (3) for optical beam transformation comprising at least one segment of cylindrical lens (8) on one entry and/or exit plane of the beam(s) of light (9).
    • 用于光束变换的组件,其用于将光源(1)或多个光源成像到光纤(7)的前表面上,该光束包括至少一个光源(1),其能够发射至少一个 光束(9)并且还包括一个成像元件(2)和用于光束变换的至少一个装置(3),所述成像元件(2)能够对从所述至少一个光束(9)发射的光束进行成像 所述至少一个光源到所述至少一个用于光束变换的装置(3),所述至少一个光束可以至少部分地通过所述至少一个装置(3),并且所述至少一个用于光束变换的装置(3)能够旋转 所述至少一个光束(9)至少以约90°的角度的光束的相应部分的传播方向(z)至少部分穿过所述装置,所述装置(3) ),其包括至少一个圆柱段 (8)在光束(9)的一个进入和/或出射平面上。
    • 2. 发明授权
    • Assembly for correcting laser illumination emitted from a laser light source and method for producing said assembly
    • 用于校正从激光光源发射的激光照明的组件和用于制造所述组件的方法
    • US07075739B2
    • 2006-07-11
    • US10471600
    • 2002-03-23
    • Alexei MikhailovVitalij Lissotschenko
    • Alexei MikhailovVitalij Lissotschenko
    • G02B5/04G02B27/00G02B27/09H01S3/00
    • G02B19/0057G02B19/0014G02B27/09G02B27/0972H01S5/005H01S5/4025
    • The invention relates to an assembly for correcting laser illumination emitted from a laser light source, comprising a laser light source, which has linear emission sources that are arranged in a row in a first direction (X), whereby in addition, the emission sources that are arranged essentially in a row are at least partially offset relative to the row in a perpendicular direction (Y) in relation to the first direction (X). The assembly also comprises corrective elements, which can correct the laser illumination emitted from the laser light source in such a way that the spatial distortion of the laser illumination, caused by the offset position of the emission sources relative to the row, is compensated. According to the invention, the corrective elements are configured as a plate array that comprises a number of plate elements consisting of substantially plane-parallel plates that are transparent to the laser illumination used. At least two of the plate elements have a different thickness and the corrective mans is located in the laser illumination emitted from the laser light source, in such a way that the light beams emitted from at least two emission sources that are offset in relation to one another are subjected to a respective beam offset of a different magnitude by two different plate elements, thus compensating the distortion caused by the offset position of the emission sources. The invention also relates to a method for producing the aforementioned assembly.
    • 本发明涉及一种用于校正从激光光源发射的激光照射的组件,其包括激光光源,该激光光源具有沿第一方向(X)排列成一行的线性发射源,由此另外,发射源 相对于第一方向(X)在基本上排成一行的方向至少部分地相对于行在垂直方向(Y)上偏移。 组件还包括校正元件,其可以校正从激光光源发射的激光照射,使得由发射源相对于行的偏移位置引起的激光照明的空间失真被补偿。 根据本发明,校正元件被构造为板阵列,其包括由对所使用的激光照射透明的基本上平面平行的板组成的多个板元件。 至少两个板元件具有不同的厚度,并且校正人员位于从激光光源发射的激光照射中,使得从至少两个发射源发射的光束相对于一个偏移 另一个由两个不同的板元件经受不同幅度的相应的光束偏移,从而补偿由发射源的偏移位置引起的失真。 本发明还涉及一种用于生产上述组件的方法。
    • 6. 发明授权
    • Imaging system
    • 成像系统
    • US06728040B1
    • 2004-04-27
    • US10030085
    • 2002-03-05
    • Alexei MikhailovDirk Hauschild
    • Alexei MikhailovDirk Hauschild
    • G02B2710
    • G02B3/06
    • An imaging system, especially an imaging system for imaging electromagnetic radiation in the optical spectral range, includes at least one lens element and at least one first and one second optically functional boundary surface through which the electromagnetic radiation can pass. At least the first and at least the second optically functional interface can be located either on one or on two or more lens elements. At least the first and at least the second optically functional interface have, at least in sections, a cylinder lens geometry or a cylinder lens-like geometry so that these optically functional interfaces each have a direction lying in the interfaces and along which at least in sections the curvature of the surface is essentially constant. The direction of essentially constant curvature of at least the first optically functional interface to the direction of essentially constant curvature of at least the second optically functional interface being aligned roughly perpendicular to one another.
    • 成像系统,特别是用于在光谱范围内成像电磁辐射的成像系统,包括至少一个透镜元件和至少一个第一和第二光学功能边界表面,电磁辐射可通过该边界面通过。 至少第一和至少第二光学功能界面可以位于两个或更多个透镜元件上的一个上或两个或更多个透镜元件上。 至少第一光学功能界面和至少第二光学功能界面至少部分地具有圆柱透镜几何形状或柱面透镜状几何形状,使得这些光学功能界面各自具有位于界面中的方向,并且至少在 截面表面的曲率基本恒定。 至少第一光学功能界面的至少第二光学功能界面的基本恒定曲率的方向基本上恒定的方向大致垂直于彼此对准。
    • 7. 发明授权
    • Neural cortex
    • 神经皮层
    • US07305370B2
    • 2007-12-04
    • US10398279
    • 2000-11-30
    • Yang Ming PokAlexei Mikhailov
    • Yang Ming PokAlexei Mikhailov
    • G06E1/00G06E3/00G06F15/18G06G7/00
    • G06K9/6267G06N3/063
    • A neural network system includes a random access memory (RAM); and an index-based weightless neural network with a columnar topography; wherein patterns of binary connections and values of output nodes' activities are stored in the RAM. Information is processed by pattern recognition using the neural network by storing a plurality of output patterns to be recognized in a pattern index; accepting an input pattern and dividing the input pattern into a plurality of components; and processing each component according to the pattern index to identify a recognized output pattern corresponding to the input pattern.
    • 神经网络系统包括随机存取存储器(RAM); 和具有柱状地形的基于索引的无重力神经网络; 其中二进制连接的模式和输出节点的活动的值被存储在RAM中。 通过使用神经网络的模式识别来处理信息,通过存储要在图案索引中识别的多个输出图案; 接受输入图案并将输入图案分割成多个分量; 以及根据所述图案索引处理每个分量以识别与所述输入图案相对应的识别的输出图案。
    • 8. 发明授权
    • Beam shaping device, system for launching a light beam into an optical fiber, and beam rotation unit for such a beam shaping device or such a system
    • 光束成形装置,用于将光束发射到光纤中的系统,以及用于这种光束整形装置的光束旋转单元或这种系统
    • US07085053B2
    • 2006-08-01
    • US10469991
    • 2002-03-15
    • Alexei Mikhailov
    • Alexei Mikhailov
    • G02B5/30
    • G02B27/0972G02B27/09G02B27/0905
    • A device for shaping the cross-section of a light beam, has at least one beam shaping unit with a beam splitter, beam deflector and beam combiner. The beam splitter can split a light beam which is incident on the beam shaping unit into two partial beams. The beam deflector can deflect at least one of the partial beams onto the beam combiner which can combine the two partial beams in such a manner that the cross-section of the light beam emerging from the beam shaping unit is reduced in size in one direction compared to the light beam incident on the beam shaping unit. The beam combiner is a polarisation-selective beam splitting and beam combination unit that comprises at least two elements with an interface interposed in between. The two split partial beams can be incident on the interface from different directions.
    • 用于使光束的横截面成形的装置具有至少一个具有分束器,光束偏转器和光束组合器的光束整形单元。 光束分离器可将入射到光束整形单元上的光束分成两个部分光束。 光束偏转器可以使部分光束中的至少一个偏转到光束组合器上,该组合器可以组合两个部分光束,使得从光束整形单元出射的光束的横截面在一个方向上的尺寸减小 到入射到光束整形单元上的光束。 光束组合器是偏振选择光束分离和光束组合单元,其包括至少两个具有介于其间的接口的元件。 两个分裂的部分光束可以从不同的方向入射到界面上。
    • 9. 发明授权
    • BEAM SHAPING DEVICE FOR SHAPING THE CROSS-SECTION OF A LIGHT BEAM AND SYSTEM FOR LAUNCHING INTO AN OPTICAL FIBER A LIGHT BEAM HAVING AN ELONGATED CROSS-SECTION AND BEING EMITTED BY AN ELONGATED LASER BEAM SOURCE
    • 用于形成光束的交叉部分的光束形成装置和用于发射到光纤的系统具有延长的交叉部分的光束并且由延长的激光束源产生的光束
    • US06816318B2
    • 2004-11-09
    • US10470271
    • 2003-08-07
    • Alexei Mikhailov
    • Alexei Mikhailov
    • G02B2712
    • G02B27/0972G02B6/4206G02B27/09G02B27/0905G02B27/0911G02B27/143
    • The invention relates to a beam shaping device for shaping the cross-section of a light beam, comprising at least one beam shaping unit with beam splitting means, beam deflecting means, and beam combination means. The beam splitting means are capable of diving up a light beam that is incident on the beam shaping unit into two partial beams. The beam deflecting means are capable of deflecting at least one of the partial beams onto the beam combination means and said beam combination means are capable of combining the two partial beams in such a manner that the cross-section of the light beam exiting the beam shaping unit is reduced in size in a first direction compared to the cross-section of the light beam that is incident on the beam shaping unit and is increased in size in a second direction perpendicular thereto. the invention is further characterized in that the beam combination means can also be used as beam splitting means, whereby only one of the partial beams is deflected by the beam deflecting means, while the other partial beam is directly incident on the beam combination means.
    • 本发明涉及一种用于使光束的横截面成形的光束整形装置,其包括至少一个具有光束分离装置的光束整形单元,光束偏转装置和光束组合装置。 分束装置能够将入射到光束整形单元上的光束向上分散成两个部分光束。 光束偏转装置能够将至少一个部分光束偏转到光束组合装置上,并且所述光束组合装置能够以这样的方式组合两个部分光束,使得离开光束成形的光束的横截面 与入射在光束整形单元上的光束的横截面相比,第一方向的尺寸减小,并且在垂直于其的第二方向上尺寸增大。 本发明的特征还在于,所述光束组合装置也可以用作分束装置,由此只有一个部分光束被光束偏转装置偏转,而另一部分光束直接入射到光束组合装置上。