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Optical sampling using intermediate second harmonic frequency generation

机译:使用二次谐波产生的光采样

摘要

An optical sampling method and apparatus use a probe pulse source of a predetermined optical wavelength range, e.g., 1560 nm, to sample incoming optical pulses in approximately the same wavelength range. The probe pulse source is frequency-doubled e.g., using a frequency doubler such as a nonlinear PPLN crystal, to obtain an intermediate second harmonic which may be filtered with a 780 nm bandpass filter to eliminate at least source frequency noise background. The filtered intermediate second harmonic is then mixed with the user input signal using an optional polarizing beam splitter and a dichroic beam splitter. The mixed signal is sent to a sum frequency generating (SFG) nonlinear crystal, e.g., a PPLN crystal, where the resulting frequency is near the third harmonic. The output from the SFG PPLN crystal may be filtered using a bandpass 515 nm filter to remove unwanted wavelengths and processed to measure/sense the near third harmonic content using a photomultiplier tube (PMT). Beyond the PMT, the output may be sent to a microprocessor for analysis and display on a cathode ray oscilloscope as necessary. 80-85% power conversion efficiency in the frequency doubler, a 60 or 65% photon conversion efficiency in the sampler and handling of 600+ GHz bandwidths, as well as background noise reduction are possible by using the invention.
机译:光学采样方法和设备使用预定光学波长范围(例如1560 nm)的探测脉冲源来采样大约相同波长范围内的入射光脉冲。例如使用诸如非线性PPLN晶体之类的倍频器将探测脉冲源倍频,以获得中间二次谐波,该中间二次谐波可以用780nm带通滤波器滤波以至少消除源频率噪声背景。然后,使用可选的偏振分束器和二向色分束器将滤波后的中间二次谐波与用户输入信号混合。混合后的信号被发送到和频产生(SFG)非线性晶体,例如PPLN晶体,其结果频率接近三次谐波。 SFG PPLN晶体的输出可以使用带通515 nm滤光片进行过滤以去除不想要的波长,并使用光电倍增管(PMT)进行处理以测量/检测接近三次谐波的含量。除PMT之外,如有必要,可以将输出发送到微处理器进行分析并在阴极射线示波器上显示。倍频器中的功率转换效率为80-85%,采样器中的光子转换效率为60%或65%,并处理600 + plus;通过使用本发明,GHz带宽以及背景噪声的降低都是可能的。

著录项

  • 公开/公告号US6785471B2

    专利类型

  • 公开/公告日2004-08-31

    原文格式PDF

  • 申请/专利权人 AGILENT TECHNOLOGIES INC.;

    申请/专利号US20010885154

  • 发明设计人 ROGER LEE JUNGERMAN;GREGORY S. LEE;

    申请日2001-06-20

  • 分类号H04B100/80;H04B170/00;G01B90/20;

  • 国家 US

  • 入库时间 2022-08-21 23:18:14

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