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    • 2. 发明授权
    • Device and method for illuminating a sample
    • US10132754B2
    • 2018-11-20
    • US15037451
    • 2014-11-19
    • LEICA MICROSYSTEMS CMS GMBH
    • Vishnu Vardhan KrishnamachariVolker SeyfriedWilliam C. HayManuel Kremer
    • G01N21/00G01N21/65G02B21/00G02B21/16
    • A device (10) for illuminating a sample (40) is described, having: at least one pulsed laser light source (12) for repeated emission of a first laser pulse along a first light path (14) and of a second laser pulse along a second light path (16) physically separated from the first light path; a superimposition element (32) for collinear superimposition of the two laser pulses in a shared light path (34); a delay stage (26) arranged in the first or the second light path (14, 16), for delaying one of the two laser pulses relative to the other laser pulse in such a way that the two laser pulses sent along the shared light path (34) onto the sample (40) exhibit a temporal superimposition; a shared chirp unit (36) arranged in the shared light path (34), for frequency-modifying influencing both of the first laser pulse and of the second laser pulse; and at least one separate chirp unit (18) arranged in the first light path (14), for frequency-modifying influencing only of the first laser pulse. The shared chirp unit (36) and the separate chirp unit (18) are coordinated with one another in order to achieve a target state. The separate chirp unit (18) is coupled to a control system (20) by which the separate chirp unit (18) is controllable with a control parameter dependent on the wavelength of the first laser pulse in order to establish the target state.
    • 3. 发明申请
    • APPARATUS AND METHOD FOR OPERATING AN ACOUSTO-OPTICAL COMPONENT
    • 用于操作光学元件的装置和方法
    • US20140168753A1
    • 2014-06-19
    • US14185719
    • 2014-02-20
    • Leica Microsystems CMS GmbH
    • Volker Seyfried
    • G02F1/33
    • G02F1/33G02F2203/60
    • An apparatus for controlling an acousto-optical component influencing at least one of illumination light and detection light in a microscope is described. The apparatus comprises a radio-frequency generator for supplying the acousto-optical component with a radio frequency. The radio-frequency generator is configured to compensate deviations in the characteristics of the light due to temperature fluctuations in the acousto-optical component by adapting the radio frequency. The apparatus can be operated by generating a control signal for controlling the radio frequency of the radio-frequency generator; measuring the temperature of the acousto-optical component; adapting the control signal depending on the measured temperature; and sending the adapted control signal into the radio-frequency generator for compensating deviations in the characteristics of the light due to temperature fluctuations and can be used in optical coherence tomography, particularly white light interferometry, optical tweezers in lithography, and distance measurement.
    • 描述了一种用于控制影响显微镜中的照明光和检测光中的至少一种的声光部件的装置。 该装置包括用于向声光部件提供射频的射频发生器。 射频发生器被配置为通过调整射频来补偿由于声光分量中的温度波动导致的光的特性偏差。 可以通过产生用于控制射频发生器的射频的控制信号来操作该装置; 测量声光部件的温度; 根据测量的温度调整控制信号; 并将适应的控制信号发送到射频发生器中,用于补偿由于温度波动引起的光的特性的偏差,并且可以用于光学相干断层摄影,特别是白光干涉测量,光刻中的光学镊子和距离测量。
    • 7. 发明授权
    • Apparatus and method for operating an acousto-optical component
    • 用于操作声光部件的装置和方法
    • US09229294B2
    • 2016-01-05
    • US14185719
    • 2014-02-20
    • Leica Microsystems CMS GmbH
    • Volker Seyfried
    • G02F1/33
    • G02F1/33G02F2203/60
    • An apparatus for controlling an acousto-optical component influencing at least one of illumination light and detection light in a microscope is described. The apparatus comprises a radio-frequency generator for supplying the acousto-optical component with a radio frequency. The radio-frequency generator is configured to compensate deviations in the characteristics of the light due to temperature fluctuations in the acousto-optical component by adapting the radio frequency. The apparatus can be operated by generating a control signal for controlling the radio frequency of the radio-frequency generator; measuring the temperature of the acousto-optical component; adapting the control signal depending on the measured temperature; and sending the adapted control signal into the radio-frequency generator for compensating deviations in the characteristics of the light due to temperature fluctuations and can be used in optical coherence tomography, particularly white light interferometry, optical tweezers in lithography, and distance measurement.
    • 描述了一种用于控制影响显微镜中的照明光和检测光中的至少一种的声光部件的装置。 该装置包括用于向声光部件提供射频的射频发生器。 射频发生器被配置为通过调整射频来补偿由于声光分量中的温度波动导致的光的特性偏差。 可以通过产生用于控制射频发生器的射频的控制信号来操作该装置; 测量声光部件的温度; 根据测量的温度调整控制信号; 并将适应的控制信号发送到射频发生器中,用于补偿由于温度波动引起的光的特性的偏差,并且可以用于光学相干断层摄影,特别是白光干涉测量,光刻中的光学镊子和距离测量。