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    • 3. 发明申请
    • COMPACT ULTRA-SHORT PULSE SOURCE AMPLIFIERS
    • 紧凑型超短脉冲源放大器
    • WO2014062759A2
    • 2014-04-24
    • PCT/US2013/065169
    • 2013-10-16
    • IMRA AMERICA, INC.
    • FERMANN, Martin
    • G02F1/35
    • H01S3/1106B23K26/0624H01J49/161H01S3/0057H01S3/06708H01S3/06741H01S3/0675H01S3/06754H01S3/094003H01S3/094026H01S3/094042H01S3/094061H01S3/0941H01S3/109H01S3/1115
    • The present invention relates to compact, low noise, ultra-short pulse sources based on fiber amplifiers, and various applications thereof. At least one implementation includes an optical amplification system having a fiber laser seed source producing seed pulses at a repetition rate corresponding to the fiber laser cavity round trip time. A nonlinear pulse transformer, comprising a fiber length greater than about 10 m, receives a seed pulse at its input and produces a spectrally broadened output pulse at its output, the output pulse having a spectral bandwidth which is more than 1.5 times a spectral bandwidth of a seed pulse. A fiber power amplifier receives and amplifies spectrally broadened output pulses. A pulse compressor is configured to temporally compress spectrally broadened pulses amplified by said power amplifier. Applications include micro-machining, ophthalmology, molecular desorption or ionization, mass-spectroscopy, and/or laser- based, biological tissue processing.
    • 本发明涉及基于光纤放大器的紧凑,低噪声,超短脉冲源及其各种应用。 至少一个实施方案包括具有光纤激光种子源的光放大系统,其以对应于光纤激光腔往返时间的重复频率产生种子脉冲。 包括光纤长度大于约10微米的非线性脉冲变压器在其输入处接收种子脉冲,并在其输出端产生光谱扩展的输出脉冲,其输出脉冲的频谱带宽大于光谱带宽的1.5倍 种子脉冲。 光纤功率放大器接收并放大光谱扩展的输出脉冲。 脉冲压缩器被配置为在时间上压缩由所述功率放大器放大的频谱变宽的脉冲。 应用包括微加工,眼科学,分子解吸或离子化,质谱法和/或基于激光的生物组织处理。
    • 4. 发明申请
    • FREQUENCY COMB SOURCE WITH LARGE COMB SPACING
    • 频率合成源与大型COMB间距
    • WO2012074623A1
    • 2012-06-07
    • PCT/US2011/057567
    • 2011-10-25
    • IMRA AMERICA, INC.FERMANN, MartinHARTL, Ingmar
    • FERMANN, MartinHARTL, Ingmar
    • H01S3/098
    • G02F1/365G01J3/10G02F2001/3528H01S3/0085H01S3/0092H01S3/0675H01S3/08054H01S3/0809H01S3/10046H01S3/105H01S3/1106H01S3/1112H01S3/1115H01S3/1118H01S3/1618
    • A frequency comb laser providing large comb spacing is disclosed. At least one embodiment includes a mode locked waveguide laser system. The mode locked waveguide laser includes a laser cavity having a waveguide, and a dispersion control unit (DCU) in the cavity. The DCU imparts an angular dispersion, group-velocity dispersion (GVD) and a spatial chirp to a beam propagating in the cavity. The DCU is capable of producing net GVD in a range from a positive value to a negative value. In some embodiments a tunable fiber frequency comb system configured as an optical frequency synthesizer is provided. In at least one embodiment a low phase noise micro-wave source may be implemented with a fiber comb laser having a comb spacing greater than about 1 GHz. The laser system is suitable for mass-producible fiber comb sources with large comb spacing and low noise. Applications include high-resolution spectroscopy.
    • 公开了一种提供较大梳形间距的频率梳状激光器。 至少一个实施例包括模式锁定波导激光系统。 模式锁定波导激光器包括具有波导的激光腔和空腔中的色散控制单元(DCU)。 DCU向在腔中传播的光束赋予角度色散,群速度色散(GVD)和空间啁啾声。 DCU能够在从正值到负值的范围内产生净GVD。 在一些实施例中,提供了被配置为光频合成器的可调光纤频率梳状系统。 在至少一个实施例中,低相位噪声微波源可以用具有大于约1GHz的梳齿间隔的光纤梳状激光器来实现。 激光系统适用于具有大梳齿间隔和低噪音的大规模生产的光纤梳状光源。 应用包括高分辨率光谱。