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    • 1. 发明授权
    • Apparatus and method for multiple-pulse impulsive stimulated raman spectroscopy
    • 多脉冲脉冲刺激拉曼光谱仪的装置和方法
    • US08456629B2
    • 2013-06-04
    • US12945030
    • 2010-11-12
    • Bahram JalaliKeisuke GodaAkira SatoKenji Taira
    • Bahram JalaliKeisuke GodaAkira SatoKenji Taira
    • G01J3/44
    • G01N21/65G01N2021/655
    • Spectroscopic measurements are described based on light-molecule interaction in response to a resonant rate optical pulse train so that a Raman spectrum is reflected containing at least two types of vibrational mode information (e.g., vibrational frequency, and vibrational phase relaxation) on the molecules comprising the object. A pump optical pulse train generation means is configured for generating an optical pulse train having an arbitrary repetition rate which is directed through irradiation means to the sample object. Light from the sample object is collected and vibrational coherence is detected for the sample object. The sample is tested across a plurality of different repetition frequencies. The detected information can be compared with data from other known samples from within a database when analyzing the information collected.
    • 基于响应于谐振速率光脉冲序列的光分子相互作用来描述光谱测量,使得反射的拉曼光谱包含至少两种类型的振动模式信息(例如振动频率和振动相松弛),包括 物体。 泵浦光脉冲串产生装置被配置为产生具有任意重复频率的光脉冲序列,其通过照射装置被引导到样本物体。 收集来自样品物体的光并检测样品物体的振动相干性。 在多个不同的重复频率上测试样本。 当分析收集的信息时,检测到的信息可以与数据库内其他已知样本的数据进行比较。
    • 2. 发明申请
    • APPARATUS AND METHOD FOR MULTIPLE-PULSE IMPULSIVE STIMULATED RAMAN SPECTROSCOPY
    • 多脉冲刺激拉曼光谱法的装置与方法
    • US20110122407A1
    • 2011-05-26
    • US12945030
    • 2010-11-12
    • Bahram JalaliKeisuke GodaAkira SatoKenji Taira
    • Bahram JalaliKeisuke GodaAkira SatoKenji Taira
    • G01J3/44
    • G01N21/65G01N2021/655
    • Spectroscopic measurements are described based on light-molecule interaction in response to a resonant rate optical pulse train so that a Raman spectrum is reflected containing at least two types of vibrational mode information (e.g., vibrational frequency, and vibrational phase relaxation) on the molecules comprising the object. A pump optical pulse train generation means is configured for generating an optical pulse train having an arbitrary repetition rate which is directed through irradiation means to the sample object. Light from the sample object is collected and vibrational coherence is detected for the sample object. The sample is tested across a plurality of different repetition frequencies. The detected information can be compared with data from other known samples from within a database when analyzing the information collected.
    • 基于响应于谐振速率光脉冲序列的光分子相互作用来描述光谱测量,使得反射的拉曼光谱包含至少两种类型的振动模式信息(例如振动频率和振动相松弛),包括 物体。 泵浦光脉冲串产生装置被配置为产生具有任意重复频率的光脉冲序列,其通过照射装置被引导到样本物体。 收集来自样品物体的光并检测样品物体的振动相干性。 在多个不同的重复频率上测试样本。 当分析收集的信息时,检测到的信息可以与数据库内其他已知样本的数据进行比较。
    • 4. 发明授权
    • Apparatus and method for dispersive fourier-transform imaging
    • 色散傅里叶变换成像装置及方法
    • US08376218B2
    • 2013-02-19
    • US12985539
    • 2011-01-06
    • Bahram JalaliKeisuke GodaKevin Kin-Man Tsia
    • Bahram JalaliKeisuke GodaKevin Kin-Man Tsia
    • G06F17/00
    • G06K7/1439G06K7/10712G06K7/10831G06K7/14
    • A barcode reading apparatus and method in which the spectrum of a probe light is first Fourier-transformed into space, directed upon a barcode, and then Fourier-transformed converting the spectrally encoded barcode pattern to a time domain waveform. In one implementation, the Fourier transformation from the spectrum domain into a spatial domain is performed by a dispersive element, while the Fourier transformation from the spectrally encoded barcode pattern to a time domain waveform is performed by group-velocity dispersion (GVD). The temporally encoded barcode pattern is detected by a photodetector, digitized by a digitizer, and analyzed by a digital signal processor. The invention is applicable to a number of fields which involve the reading of one- and two-dimensional barcodes, displacement sensing, surface measurements, measurement of width and gap, flow cytometry, reading of optical media, presence or absence detection, and other related fields.
    • 一种条形码读取装置和方法,其中探针光的光谱首先被傅里叶变换为空间,指向条形码,然后经频谱转换成频谱编码的条形码图案到时域波形。 在一个实现中,通过色散元素执行从频域到空间域的傅立叶变换,而通过组速度色散(GVD)执行从频谱编码的条形码图案到时域波形的傅里叶变换。 时间编码的条形码图案由光电检测器检测,由数字化仪数字化,并由数字信号处理器分析。 本发明适用于涉及读取一维和二维条形码,位移检测,表面测量,宽度和间隙测量,流式细胞术,光学介质读数,有无检测等相关领域的多个领域 领域。
    • 5. 发明申请
    • APPARATUS AND METHOD FOR DISPERSIVE FOURIER-TRANSFORM IMAGING
    • 用于分散式FOURIER-TRANSFORM成像的装置和方法
    • US20110168776A1
    • 2011-07-14
    • US12985539
    • 2011-01-06
    • Bahram JalaliKeisuke GodaKevin Kin-Man Tsia
    • Bahram JalaliKeisuke GodaKevin Kin-Man Tsia
    • G06K7/14G06F17/00G06Q90/00G01B11/14
    • G06K7/1439G06K7/10712G06K7/10831G06K7/14
    • A barcode reading apparatus and method in which the spectrum of a probe light is first Fourier-transformed into space, directed upon a barcode, and then Fourier-transformed converting the spectrally encoded barcode pattern to a time domain waveform. In one implementation, the Fourier transformation from the spectrum domain into a spatial domain is performed by a dispersive element, while the Fourier transformation from the spectrally encoded barcode pattern to a time domain waveform is performed by group-velocity dispersion (GVD). The temporally encoded barcode pattern is detected by a photodetector, digitized by a digitizer, and analyzed by a digital signal processor. The invention is applicable to a number of fields which involve the reading of one- and two-dimensional barcodes, displacement sensing, surface measurements, measurement of width and gap, flow cytometry, reading of optical media, presense or absence detection, and other related fields.
    • 一种条形码读取装置和方法,其中探针光的光谱首先被傅里叶变换为空间,指向条形码,然后经频谱转换成频谱编码的条形码图案到时域波形。 在一个实现中,通过色散元素执行从频域到空间域的傅立叶变换,而通过组速度色散(GVD)执行从频谱编码的条形码图案到时域波形的傅里叶变换。 时间编码的条形码图案由光电检测器检测,由数字化仪数字化,并由数字信号处理器分析。 本发明可应用于涉及读取一维和二维条形码,位移检测,表面测量,宽度和间隙测量,流式细胞术,光学介质读数,预存或不存在检测等多个领域 领域。