Li Jianchao, Alexander Dennis R, Zhang Haifeng, Parali Ufuk, Doerr David W, Bruce John C, Wang Hao
Opt Express. 2007 Feb 19;15(4):1939-45. doi: 10.1364/oe.15.001939.
In this paper, propagation of ultrashort pulses through a long 3.5 meter water channel was studied. Of particular interest was the attenuation of the beam at various lengths along the variable path length and to find an explanation of why the attenuation deviates from typical Beer Lambert law around 3 meters for ultrashort laser pulse transmission. Laser pulses of 10 fs at 75 MHz, 100 fs at 80 MHz and 300 fs at 1 KHz were employed to investigate the effects of pulse duration, spectrum and repetition rate on the attenuation after propagating through water up to 3 meters. Stretched pulse attenuation measurements produced from 10 fs at a frequency of 75 MHz were compared with the 10 fs attenuation measurements. Results indicate that the broad spectrum of the ultrashort pulse is the dominant reason for the observed decrease in attenuation after 3 meters of travel in a long water channel. The repetition rate is found not to play a significant role at least for the long pulse scenario in this reported attenuation studies.
本文研究了超短脉冲在一条3.5米长的水通道中的传播情况。特别令人感兴趣的是,光束在沿可变光程长度的不同长度处的衰减情况,以及找出超短激光脉冲传输在约3米处衰减为何偏离典型比尔-朗伯定律的原因。使用了频率为75兆赫兹的10飞秒激光脉冲、80兆赫兹的100飞秒激光脉冲和1千赫兹的300飞秒激光脉冲,来研究脉冲持续时间、光谱和重复率对在水中传播长达3米后的衰减的影响。将频率为75兆赫兹的10飞秒拉伸脉冲衰减测量结果与10飞秒衰减测量结果进行了比较。结果表明,超短脉冲的宽光谱是在长水通道中传播3米后观察到的衰减下降的主要原因。在本报告的衰减研究中,至少对于长脉冲情况,发现重复率不起重要作用。