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    • 31. 发明授权
    • Systems and methods for measurement of a specimen with vacuum ultraviolet light
    • 用真空紫外光测量样品的系统和方法
    • US07359052B2
    • 2008-04-15
    • US10846053
    • 2004-05-14
    • John FieldenGary JanikShing Lee
    • John FieldenGary JanikShing Lee
    • G01J4/00
    • G01J3/10G01J3/0286G01J3/36G01N21/211G01N2021/213
    • Various systems for measurement of a specimen are provided. One system includes an optical subsystem configured to perform measurements of a specimen using vacuum ultraviolet light and non-vacuum ultraviolet light. This system also includes a purging subsystem that is configured to maintain a purged environment around the optical subsystem during the measurements. Another system includes a cleaning subsystem configured to remove contaminants from a specimen prior to measurement. In one embodiment, the cleaning subsystem may be a laser-based cleaning subsystem that is configured to remove contaminants from a localized area on the specimen. The system also includes an optical subsystem that is configured to perform measurements of the specimen using vacuum ultraviolet light. The optical subsystem is disposed within a purged environment. In some embodiments, the system may include a differential purging subsystem that is configured to provide the purged environment for the optical subsystem.
    • 提供了用于测量样本的各种系统。 一个系统包括被配置为使用真空紫外光和非真空紫外光进行样本的测量的光学子系统。 该系统还包括清洗子系统,其被配置为在测量期间保持围绕光学子系统的净化环境。 另一种系统包括清洁子系统,其构造成在测量之前从试样中去除污染物。 在一个实施例中,清洁子系统可以是被配置为从样本上的局部区域去除污染物的基于激光的清洁子系统。 该系统还包括被配置为使用真空紫外光进行样本的测量的光学子系统。 光学子系统设置在净化的环境中。 在一些实施例中,系统可以包括差分清洗子系统,其被配置为提供用于光学子系统的净化环境。
    • 37. 发明授权
    • Method and system for providing an energy assisted magnetic recording writer having an integrated NFT, heat sink, and pole
    • 用于提供具有集成的NFT,散热器和极的能量辅助磁记录器的方法和系统
    • US08486286B1
    • 2013-07-16
    • US12975184
    • 2010-12-21
    • Wei GaoShing Lee
    • Wei GaoShing Lee
    • B44C1/22G11B5/127
    • G11B5/314G11B5/1278G11B5/3116G11B5/3136G11B2005/0021Y10T29/49048
    • A method and system for providing an energy assisted magnetic recording (EAMR) transducer coupled with a laser are described. The laser provides energy. The EAMR transducer has an air-bearing surface (ABS) configured to reside in proximity to a media during use. The EAMR transducer includes a near field transducer (NFT) proximate to the ABS for focusing the energy onto the region of the media. The method and system include providing a heat sink having a bottom thermally coupled with the NFT and a top surface at an angle with respect to the ABS. The angle is greater than zero and less than ninety degrees. The method and system also include providing a write pole and at least one coil. The write pole is configured to write to a region of the media. The write pole has a bottom surface thermally coupled with the top surface of the heat sink. The at least one coil is for energizing 24.
    • 描述了一种用于提供与激光器耦合的能量辅助磁记录(EAMR)传感器的方法和系统。 激光器提供能量。 EAMR传感器具有配置成在使用期间驻留在介质附近的空气轴承表面(ABS)。 EAMR传感器包括靠近ABS的近场传感器(NFT),用于将能量聚焦到介质的区域上。 该方法和系统包括提供具有与NFT热耦合的底部和相对于ABS成一定角度的顶表面的散热器。 角度大于零,小于九十度。 所述方法和系统还包括提供写极点和至少一个线圈。 写入极配置为写入介质的一个区域。 写极具有与散热器的顶表面热耦合的底表面。 至少一个线圈用于激励24。
    • 38. 发明授权
    • Energy assisted magnetic recording head having a reflector for improving efficiency of the light beam
    • 能量辅助磁记录头具有用于提高光束效率的反射器
    • US08456964B1
    • 2013-06-04
    • US12947085
    • 2010-11-16
    • Hongxing YuanShing LeeZhong ShiJinshan LiUt Tran
    • Hongxing YuanShing LeeZhong ShiJinshan LiUt Tran
    • G11B11/00
    • G11B5/314G11B5/6088G11B2005/0021
    • A method and system for providing an EAMR transducer is described. The EAMR transducer is coupled with a laser for providing energy and has an ABS that resides near a media during use. The EAMR transducer includes a write pole, coil(s) that energize the pole, a near field transducer (NFT) proximate to the ABS, a waveguide, and a reflector. The write pole has a back gap region and writes to a region of the media. The NFT focuses the energy onto the media. The waveguide directs the energy from the laser toward the NFT at an incident angle with respect to the ABS. A first portion of the energy reflects off of the ABS at a reflected angle. The reflector receives the first portion of the energy from the ABS and reflects a second portion of the energy toward the ABS. The NFT resides between the waveguide and the reflector.
    • 描述了一种用于提供EAMR换能器的方法和系统。 EAMR传感器与用于提供能量的激光器耦合,并且在使用期间具有驻留在介质附近的ABS。 EAMR传感器包括一个写入极,对极点通电的线圈,靠近ABS的近场传感器(NFT),波导和反射器。 写极具有背隙区域并写入介质的区域。 NFT将能量集中在媒体上。 波导将来自激光器的能量以相对于ABS的入射角向NFT引导。 能量的第一部分以反射角反射离开ABS。 反射器从ABS接收能量的第一部分并将能量的第二部分反射向ABS。 NFT位于波导和反射器之间。
    • 39. 发明授权
    • Double optical grating
    • 双光栅
    • US08422841B1
    • 2013-04-16
    • US12779160
    • 2010-05-13
    • Zhong ShiHongxing YuanShing LeeZhongyan WangJinshan Li
    • Zhong ShiHongxing YuanShing LeeZhongyan WangJinshan Li
    • G02B6/34
    • G02B6/124G02B27/4272
    • A method and system for providing an optical grating are described. The optical grating is configured for light of a wavelength. The optical grating includes a top cladding, a first plurality of discrete ridges forming a first grating, a core, a second plurality of discrete ridges forming a second grating, and a bottom cladding. The first plurality of discrete ridges are spaced apart by a first pitch. The second plurality of discrete ridges are spaced apart by a second pitch. The core has a top side adjacent to at least a portion of the top cladding and a bottom side. The bottom cladding is adjacent to at least a portion of the bottom side of the core. The second grating resides between the bottom cladding and the core.
    • 描述了一种用于提供光栅的方法和系统。 光栅被配置用于波长的光。 光栅包括顶部包层,形成第一光栅的第一多个离散脊,芯,形成第二光栅的第二多个离散脊和底部包层。 第一多个离散脊部间隔开第一间距。 第二多个离散脊间隔开第二间距。 芯具有与顶部包层的至少一部分相邻的顶侧和底侧。 底部包层与芯的底侧的至少一部分相邻。 第二个光栅位于底部包层和芯之间。