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Method for operating Q-switched lasers with intracavity frequency conversion

机译:腔内变频操作调Q激光器的方法

摘要

An intracavity frequency converted, Q-switched laser and method for operating such laser to obtain high output power in secondary pulses at a converted frequency. The secondary pulses are generated by a intracavity frequency conversion element from primary pulses at the fundamental wavelength. In accordance with the invention, after the primary and secondary pulses are generated the Q-switch is turned back on before the gain is fully depleted in the generation of the primary pulse. In particular, the Q-switch is turned back on such that a certain amount of energy of the primary pulse is retained in the laser, but late enough so that a majority of the secondary pulse is out-coupled from the laser. The Q-switched laser is well-suited for use at pulse repetition rates larger than 1/&tgr;, where &tgr; is an upper state lifetime (fluorescence lifetime) of the laser. Specifically, the laser can be operated at repetition rates of 10 kHz and higher, e.g., 30 kHz and higher to obtain significant increases in output power of the secondary pulses. Furthermore, the method and laser of the invention are compatible with various types of frequency conversion elements and processes including second harmonic generation, third harmonic generation, fourth harmonic generation, difference frequency generation, sum frequency generation, parametric amplification and parametric generation.
机译:腔内频率转换的Q开关激光器及其操作方法,以在转换后的频率的次级脉冲中获得高输出功率。次级脉冲由腔内频率转换元件从基本波长的初级脉冲产生。根据本发明,在产生初级和次级脉冲之后,在初级脉冲的产生中增益被完全耗尽之前,Q开关被重新接通。特别地,Q开关被重新接通,使得一定量的初级脉冲能量被保留在激光器中,但是又足够晚以至于大部分次级脉冲都与激光器脱离耦合。调Q激光器非常适合用于脉冲重复率大于1 / tgr;的情况下,是激光器的上限状态寿命(荧光寿命)。具体地说,激光器可以以10kHz和更高的重复速率(例如30kHz和更高)工作,以获得次级脉冲的输出功率的显着增加。此外,本发明的方法和激光器与各种类型的频率转换元件和过程兼容,包括二次谐波产生,三次谐波产生,三次谐波产生,差频产生,总和频率产生,参数放大和参数产生。

著录项

  • 公开/公告号US2002141457A1

    专利类型

  • 公开/公告日2002-10-03

    原文格式PDF

  • 申请/专利权人 ADAMS FRANK;

    申请/专利号US20010823908

  • 发明设计人 FRANK ADAMS;

    申请日2001-03-30

  • 分类号H01S3/11;H01S3/091;H01S3/092;

  • 国家 US

  • 入库时间 2022-08-22 00:50:53

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