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    • 4. 发明申请
    • MICROSCOPY WITH ADAPTIVE OPTICS
    • 具有自适应光学的显微镜
    • US20130181143A1
    • 2013-07-18
    • US13550250
    • 2012-07-16
    • Eric BetzigNa Ji
    • Eric BetzigNa Ji
    • G01N21/64
    • G01N21/6458G02B21/0032G02B21/06G02B26/06
    • A method of manipulating a focused light beam includes focusing a beam of excitation light with a lens to a focal spot within a sample, where a cross-section of the beam includes individual beamlets. Directions and/or relative phases of the individual beamlets of the excitation beam at a rear pupil of the lens are individually varied with a wavefront modulating element, and emission light emitted from the focal spot is detected while the directions or relative phases of individual beamlets are varied. The directions of individual beamlets are controlled to either maximize or minimize the emission light from the focal spot, and the relative phases of individual beamlets are controlled to increase the emission light from the focal spot.
    • 操纵聚焦光束的方法包括将具有透镜的激发光束聚焦到样品内的焦点,其中束的横截面包括单个子束。 在透镜的后瞳孔处的激发光束的各个子束的方向和/或相对相位分别随着波前调制元件而变化,并且从焦斑发射的发射光被检测到,而各个子束的方向或相对相位是 多变。 控制各个子束的方向以最大化或最小化来自焦点的发射光,并且控制各个子束的相对相位以增加来自焦点的发射光。
    • 7. 发明授权
    • Nonlinear imaging using passive pulse splitters
    • 使用无源脉冲分离器的非线性成像
    • US08718106B2
    • 2014-05-06
    • US13099475
    • 2011-05-03
    • Na JiEric Betzig
    • Na JiEric Betzig
    • H01S3/10
    • H01S3/0057G01N21/6408G01N21/6458G01N2021/653G01N2021/656H01S3/025H01S3/1625H01S3/1636
    • An apparatus includes a pulsed laser source that produces a pulsed laser beam at an input repetition rate and an input pulse power; a passive pulse splitter that receives the pulsed laser beam and outputs a signal including a plurality of sub-pulses for each input pulse of the pulsed laser beam, where the sub-pulses have a repetition rate that is greater than the input repetition rate and at least two of the sub-pulses have power less than the input pulse power; a sample accommodating structure configured to accommodate a sample placed in the path of a sample beam that is formed from the beam that exits the pulse splitter; and a detector that receives a signal of interest emitted from a sample accommodated by the sample accommodating structure based on the incident sample beam.
    • 一种装置包括脉冲激光源,其以输入重复频率和输入脉冲功率产生脉冲激光束; 被动脉冲分离器,其接收脉冲激光束并输出包括用于脉冲激光束的每个输入脉冲的多个子脉冲的信号,其中子脉冲具有大于输入重复频率的重复率,并且在 至少两个子脉冲的功率小于输入脉冲功率; 样品容纳结构,其构造成容纳放置在由离开所述脉冲分离器的光束形成的样品光束的路径中的样品; 以及检测器,其基于所述入射样本光束接收从由所述样本容纳结构容纳的样本发射的感兴趣的信号。
    • 10. 发明授权
    • Microscopy with adaptive optics
    • 显微镜与自适应光学
    • US08629413B2
    • 2014-01-14
    • US13550250
    • 2012-07-16
    • Eric BetzigNa Ji
    • Eric BetzigNa Ji
    • G01N21/64
    • G01N21/6458G02B21/0032G02B21/06G02B26/06
    • A method of manipulating a focused light beam includes focusing a beam of excitation light with a lens to a focal spot within a sample, where a cross-section of the beam includes individual beamlets. Directions and/or relative phases of the individual beamlets of the excitation beam at a rear pupil of the lens are individually varied with a wavefront modulating element, and emission light emitted from the focal spot is detected while the directions or relative phases of individual beamlets are varied. The directions of individual beamlets are controlled to either maximize or minimize the emission light from the focal spot, and the relative phases of individual beamlets are controlled to increase the emission light from the focal spot.
    • 操纵聚焦光束的方法包括将具有透镜的激发光束聚焦到样品内的焦点,其中束的横截面包括单个子束。 在透镜的后瞳孔处的激发光束的各个子束的方向和/或相对相位分别随着波前调制元件而变化,并且从焦斑发射的发射光被检测到,而各个子束的方向或相对相位是 多变。 控制各个子束的方向以最大化或最小化来自焦点的发射光,并且控制各个子束的相对相位以增加来自焦点的发射光。