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    • 6. 发明申请
    • Optical anlysis system
    • 光学分析系统
    • US20060176471A1
    • 2006-08-10
    • US10539193
    • 2003-11-21
    • Robert Hendriks
    • Robert Hendriks
    • G01J3/28G01N21/27
    • G01J3/02G01J3/0205G01J3/021G01J3/10G01J3/28G01J3/36G01N21/274G01N21/31G01N2021/3196G01N2201/129
    • The optical analysis system (1) is arranged to determine an amplitude of a principal component of an optical signal. The optical analysis system (1) comprises a first detector (5) for detecting the optical signal weighted by a first spectral weighting function, and a second detector (6) for detecting the optical signal weighted by a second spectral weighting function. For an improved signal-to-noise ratio, the optical analysis system (1) further comprises a dispersive element (2) for spectrally dispersing the optical signal, and a distribution element (4) for receiving the spectrally dispersed optical signal and for distributing a first part of the optical signal weighted by the first spectral weighting function to the first detector (5) and a second part of the optical signal weighted by the second spectral weighting function to the second detector (6). The spectroscopic analysis system (30) and the blood analysis system (40) each comprise an optical analysis system (1) according to the invention.
    • 光学分析系统(1)被布置成确定光信号的主分量的幅度。 光学分析系统(1)包括用于检测由第一光谱加权函数加权的光信号的第一检测器(5)和用于检测由第二光谱加权函数加权的光信号的第二检测器(6)。 为了提高信噪比,光学分析系统(1)还包括用于光谱分散光信号的色散元件(2)和用于接收光谱分散的光信号并用于分配光信号的分布元件(4) 由第一光谱加权函数加权到第一检测器(5)的光信号的第一部分和由第二光谱加权函数加权到第二检测器(6)的光信号的第二部分。 光谱分析系统(30)和血液分析系统(40)各自包括根据本发明的光学分析系统(1)。
    • 9. 发明申请
    • Scanning device including an optical filter
    • 扫描装置包括滤光器
    • US20060072422A1
    • 2006-04-06
    • US10535463
    • 2003-10-28
    • Robert HendriksJohannes Schleipen
    • Robert HendriksJohannes Schleipen
    • G11B7/00
    • G11B7/1381G11B7/1398
    • An optical scanning device (1; 100) for scanning an information layer (4) of an optical record carrier (2; 102). The device comprises a radiation source (11; 111) for generating a radiation beam (12, 15, 20; 112, 115, 120), an objective system (18; 118) for converging the radiation beam on the information layer (4), and an optical filter (200) for regulating the intensity profile of the radiation beam. The filter has an optical axis (119) and comprises a saturable absorber (206) having an absorption that saturates at a threshold incident radiation intensity. For incident radiation beams of intensity less than the threshold, the absorption of the absorber decreases with distance away from the axis.
    • 一种用于扫描光学记录载体(2; 102)的信息层(4)的光学扫描装置(1; 100)。 该装置包括用于产生辐射束(12,15,20; 112,115,120)的辐射源(11; 111),用于将辐射束会聚在信息层(4)上的物镜系统(18; 118) 以及用于调节辐射束的强度分布的滤光器(200)。 滤光器具有光轴(119)并且包括具有以阈值入射辐射强度饱和的吸收的可饱和吸收体(206)。 对于强度小于阈值的入射辐射束,吸收体的距离随轴的距离而减小。
    • 10. 发明申请
    • Scanning x-ray microscope with a plurality of simultaneous x-ray probes on the sample
    • 扫描x射线显微镜与样品上的多个同时x射线探针
    • US20050069082A1
    • 2005-03-31
    • US10498956
    • 2002-12-20
    • Bart BuijsseRobert Hendriks
    • Bart BuijsseRobert Hendriks
    • G01N21/62G21K1/02G21K7/00
    • G21K7/00
    • In known single probe scanning X-ray microscopes a very thin X-ray beam is selected from X-rays generated by an X-ray source. This known technique has the drawback that very few photons only take part in irradiating the sample. Therefore, high intensity sources have to be used, such as very big and expensive synchrotron sources, or very long exposure times (100 hours) have to be accepted. According to the invention it is proposed to irradiate the sample (10) by means of radiation which is selected from the source X-ray beam (4) by means of a lattice plate (6), thus providing a plurality of N probe-forming X-ray beams selected from the main beam (4). This results in an improvement of the exposure time by a factor of N.
    • 在已知的单探针扫描X射线显微镜中,从X射线源产生的X射线中选择非常薄的X射线束。 这种已知技术的缺点是极少数光子仅参与照射样品。 因此,必须使用高强度源,例如非常大且昂贵的同步加速器源,或者非常长的曝光时间(100小时)必须被接受。 根据本发明,提出通过借助于晶格板(6)从源X射线束(4)中选择的辐射照射样品(10),从而提供多个N探针形成 从主光束(4)中选择的X射线束。 这导致曝光时间提高了N倍。