Self-synchronized temporal-spectral characterization system for revealing ultrafast fiber laser dynamics

Author:

Cao Yulong1ORCID,Chang Zhenghu,Wu Qiang,Huang Jingsheng,Dang Laiyang,Liu Ai,Luo YiyangORCID,Huang Ligang,Huang Wei,Gao Lei,Zhu Tao

Affiliation:

1. The University of Hong Kong

Abstract

Due to the electronic bottleneck limited real-time measurement speed of common temporal-spectral detection and the particle-like nature of optical soliton enabled nonrepeatable transient behaviors, capturing the ultrafast laser pulses with unknown times of arrival and synchronously characterizing their temporal-spectral dynamic evolution is still a challenge. Here, using the Raman soliton frequency shift based temporal magnifier and dispersive Fourier transform based spectral analyzer, we demonstrate a self-synchronized, ultrafast temporal-spectral characterization system with a resolution of 160 fs and 0.05 nm, and a recording length above milliseconds. The synchronized nonlinear process makes it possible to image full-filled temporal sub-picosecond pulse trains regardless of their arrival times and without extra pump lasers and photoelectric conversion devices. To demonstrate the significance of this improvement, a buildup dynamic process of a soliton laser with a complex breakup and collisions of multisolitons is visually displayed in the spectral and temporal domains. The soliton dynamic evolution processes observed by our characterization system are in one-to-one correspondence with the numerical simulation results. We believe this work provides a new multidimensional technique to break the electronic bottleneck to gain additional insight into the dynamics of ultrafast lasers and nonlinear science.

Funder

National Natural Science Foundation of China

National Science Fund for Distinguished Young Scholars

Chongqing Natural Science Foundation of Innovative Research Groups

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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