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    • 103. 发明授权
    • EUV light source
    • EUV光源
    • US07411203B2
    • 2008-08-12
    • US11647016
    • 2006-12-27
    • Igor V. FomenkovAlexander I. Ershov
    • Igor V. FomenkovAlexander I. Ershov
    • H01J49/00
    • G03F7/70033B82Y10/00G03F7/70175G03F7/70916G21K1/062G21K2201/061G21K2201/065G21K2201/067H05G2/003H05G2/005H05G2/006H05G2/008
    • An apparatus and method for EUV light production is disclosed which may comprise a laser produced plasma (“LPP”) extreme ultraviolet (“EUV”) light source control system comprising a target delivery system adapted to deliver moving plasma initiation targets and an EUV light collection optic having a ibeus defining a desired plasma initiation site, comprising; a target tracking and feedback system comprising: at least one imaging device providing as an output an image of a target stream track, wherein the target stream track results from the imaging speed of the camera being too slow to image individual plasma formation targets forming the target stream imaged as the target stream track; a stream track error detector detecting an error in the position of the target stream track in at least one axis genemily perpendicular to the target stream track from a desired stream truck intersecting the desired plasma initiation site.
    • 公开了一种用于EUV光产生的装置和方法,其可以包括激光产生的等离子体(“LPP”)极紫外(“EUV”)光源控制系统,其包括适于递送移动等离子体引发靶的目标传送系统和EUV光收集 光学元件具有限定期望的等离子体起始位置的ibeus,包括: 目标跟踪和反馈系统,包括:至少一个成像装置,其提供目标流轨迹的图像作为输出,其中所述目标流轨迹由所述摄像机的成像速度导致太慢以不能成像形成所述目标的各个等离子体形成目标 流成像为目标流轨道; 流轨迹误差检测器,从与期望的等离子体起始位置相交的期望的流动车辆,在垂直于目标流轨迹的至少一个轴中至少一个轴上检测目标流轨迹的位置的误差。
    • 104. 发明授权
    • Line narrowed laser with spatial filter
    • 线狭窄激光与空间滤波器
    • US06556612B2
    • 2003-04-29
    • US09309478
    • 1999-05-10
    • Alexander I. ErshovIgor V. Fomenkov
    • Alexander I. ErshovIgor V. Fomenkov
    • H01S308
    • G03F7/70025G03F7/70041G03F7/70575H01S3/08H01S3/08004H01S3/08009H01S3/225H01S3/2251H01S3/2256H01S3/2258
    • A line narrowed laser system having a spatial filter to filter light at wavelengths greater and/or smaller than a desired range of wavelengths. The laser system is line narrowed with a line narrowing mechanism having a dispersive element which disperses laser light into wavelength dependent directions. By spatially filtering the resulting beam the bandwidth of the beam can be reduced substantially. There is also a reduction of beam energy as a result of the spatial filtering but this reduction is substantially less than some other known techniques for reducing bandwidths. A preferred spatial filter, for reducing the bandwidth of a line narrowed gas discharge laser, includes two cylindrical mirrors separated by a distance equal to their focal lengths with a slit aperture positioned at the common focal line.
    • 一种具有空间滤波器的线窄化激光系统,用于对波长较大和/或小于期望波长范围的波长进行滤光。 激光系统线条变窄,线条变窄机构具有将激光分散成波长相关方向的色散元件。 通过对所得到的光束进行空间滤波,可以显着地减小光束的带宽。 作为空间滤波的结果,还有光束能量的减少,但是这种减少远远小于用于减小带宽的一些其它已知的技术。 用于减小气体放电激光器线窄带宽的优选空间滤波器包括两个圆柱形反射镜,其间隔开等于其焦距的距离,并且狭缝孔位于公共焦线处。
    • 106. 发明授权
    • LPP EUV light source drive laser system
    • LPP EUV光源驱动激光系统
    • US07928417B2
    • 2011-04-19
    • US12288970
    • 2008-10-24
    • Alexander I. ErshovAlexander N. BykanovOleh V. KhodykinIgor V. Fomenkov
    • Alexander I. ErshovAlexander N. BykanovOleh V. KhodykinIgor V. Fomenkov
    • G01N21/00G01N21/33G01J1/00
    • H05G2/003H05G2/008
    • An apparatus and method is disclosed which may comprise a laser produced plasma EUV system which may comprise a drive laser producing a drive laser beam; a drive laser beam first path having a first axis; a drive laser redirecting mechanism transferring the drive laser beam from the first path to a second path, the second path having a second axis; an EUV collector optical element having a centrally located aperture; and a focusing mirror in the second path and positioned within the aperture and focusing the drive laser beam onto a plasma initiation site located along the second axis. The apparatus and method may comprise the drive laser beam is produced by a drive laser having a wavelength such that focusing on an EUV target droplet of less than about 100 μm at an effective plasma producing energy is not practical in the constraints of the geometries involved utilizing a focusing lens. The drive laser may comprise a CO2 laser. The drive laser redirecting mechanism may comprise a mirror.
    • 公开了一种可以包括激光产生等离子体EUV系统的装置和方法,其可以包括产生驱动激光束的驱动激光器; 具有第一轴的驱动激光束第一路径; 驱动激光重定向机构,其将所述驱动激光束从所述第一路径传递到第二路径,所述第二路径具有第二轴线; 具有中心定位的孔的EUV收集器光学元件; 以及在第二路径中的聚焦反射镜并且定位在孔内并将驱动激光束聚焦到沿着第二轴线定位的等离子体起始位置。 该装置和方法可以包括驱动激光束由具有波长的驱动激光器产生,使得在有效的等离子体产生能量下聚焦在小于约100μm的EUV目标液滴在所涉及的几何形状的约束条件下是不实际的 聚焦镜头。 驱动激光器可以包括CO2激光器。 驱动激光重定向机构可以包括镜子。
    • 109. 发明授权
    • LPP EUV light source drive laser system
    • LPP EUV光源驱动激光系统
    • US07439530B2
    • 2008-10-21
    • US11174299
    • 2005-06-29
    • Alexander I. ErshovAlexander N. BykanovOleh KhodykinIgor V. Fomenkov
    • Alexander I. ErshovAlexander N. BykanovOleh KhodykinIgor V. Fomenkov
    • G01J1/00
    • H05G2/003H05G2/008
    • An apparatus and method is disclosed which may comprise a laser produced plasma EUV system which may comprise a drive laser producing a drive laser beam; a drive laser beam first path having a first axis; a drive laser redirecting mechanism transferring the drive laser beam from the first path to a second path, the second path having a second axis; an EUV collector optical element having a centrally located aperture; and a focusing mirror in the second path and positioned within the aperture and focusing the drive laser beam onto a plasma initiation site located along the second axis. The apparatus and method may comprise the drive laser beam is produced by a drive laser having a wavelength such that focusing on an EUV target droplet of less than about 100 μm at an effective plasma producing energy if not practical in the constraints of the geometries involved utilizing a focusing lens. The drive laser may comprise a CO2 laser. The drive laser redirecting mechanism may comprise a mirror.
    • 公开了一种可以包括激光产生等离子体EUV系统的装置和方法,其可以包括产生驱动激光束的驱动激光器; 具有第一轴的驱动激光束第一路径; 驱动激光重定向机构,其将所述驱动激光束从所述第一路径传递到第二路径,所述第二路径具有第二轴线; 具有中心定位的孔的EUV收集器光学元件; 以及在第二路径中的聚焦反射镜并且定位在孔内并将驱动激光束聚焦到沿着第二轴线定位的等离子体起始位置。 该装置和方法可以包括驱动激光束由具有波长的驱动激光器产生,该激光器具有在有效等离子体产生能量的情况下聚焦在小于约100mum的EUV目标液滴上,如果在所涉及的几何形状的约束条件下 聚焦镜头。 驱动激光器可以包括CO 2激光器。 驱动激光重定向机构可以包括镜子。