Han X X, Yan X A, Xia Y W, Wang X F, Huang T C
Appl Opt. 2021 Feb 10;60(5):1110-1116. doi: 10.1364/AO.416441.
Ultrafast phenomena exist widely in modern scientific research. The time scale of ultrafast phenomena is mostly in the order of picosecond, femtosecond, or even attosecond. Nowadays, it is still a major challenge to study these nonrepetitive transient processes. Here, a temporal-frequency measurement based on a dispersion-managed technique has been proposed for an -based ultrafast laser. The temporal-frequency measurement comprises a laser diode, an optical switch, a section of tunable dispersion compensation fiber, and a three-port beam splitter. Resolution of the proposed measurement can be tuned in a wide range; further, the upper and lower resolution limits are numerically simulated. The proposed measurement is expected to be applied in ultrafast pulse detection due to its application in real-time measurement of ultrafast nonrepetitive signals.
超快现象广泛存在于现代科学研究中。超快现象的时间尺度大多在皮秒、飞秒甚至阿秒量级。如今,研究这些非重复瞬态过程仍是一项重大挑战。在此,针对基于 的超快激光器,提出了一种基于色散管理技术的时间频率测量方法。该时间频率测量装置包括一个激光二极管、一个光开关、一段可调色散补偿光纤和一个三端口分束器。所提出测量方法的分辨率可在很宽范围内调节;此外,还对分辨率的上下限进行了数值模拟。由于该测量方法可应用于超快非重复信号的实时测量,有望应用于超快脉冲检测。