Low Threshold and Robust Ultrafast Pulses from Freestanding‐Growth 2D Quaternary BiCuSeO

Author:

Yu Qiang12,Li Jie2,Wu Jian1,Liu Fangqi3,Zhang Yan2,Deng Haiqin1,Yang Zixin1,Zhang Junrong2,Chen Cheng2,Fang Long24,Zhu Sicong3,Wang Junyong2,Leng Jinyong15,Jiang Zongfu15,Zhang Kai2ORCID,Zhou Pu1

Affiliation:

1. College of Advanced Interdisciplinary Studies National University of Defense Technology Changsha 410073 China

2. CAS Key Laboratory of Nanophotonic Materials and Devices & Key Laboratory of Nanodevices and Applications i‐Lab Suzhou Institute of Nano‐Tech and Nano‐Bionics (SINANO) Chinese Academy of Sciences Suzhou 215123 China

3. Hubei Province Key Laboratory of Systems Science in Metallurgical Process College of Science The State Key Laboratory for Refractories and Metallurgy Wuhan University of Science and Technology Wuhan 430081 China

4. College of Energy and Power Engineering Inner Mongolia University of Technology Hohhot 010051 China

5. Nanhu Laser Laboratory National University of Defense Technology Changsha 410073 China

Abstract

AbstractSaturable absorber is a key component in ultrafast pulsed laser systems, which are pivotal in ultrafast physics, high‐speed communication, etc. 2D materials appear to be superior candidates as saturable absorbers for compact pulsed fiber lasers in recent years due to their wide band response and ease of integration. However, the integration of mode‐locked devices inevitably involves contamination or polymer in the interface between the layered saturable absorber and the fiber, which contributes to a high start‐up threshold for the ultrafast pulsed lasers. This study develops an on‐fiber femtosecond laser with 2D narrow‐gap semiconducting BiCuSeO as a saturable absorber by a fully dry integration process thanks to the controllable growth of freestanding quaternary BiCuSeO nanoflakes. The corresponding thermodynamic growth mechanism is systemically revealed by electron microscopy and bind‐energy calculation. An electrostatic‐force‐assisted transfer method is developed to avoid damage or chemical contamination. The BiCuSeO‐based femtosecond laser shows decent output performance (pulse width, signal‐noise ratio and repetition rate are 395 fs, 61 dB, 17.1 MHz) with an ultra‐low threshold of 30 mW. The strategy of controllable growth of free‐standing 2D material facilitates a clean interface between the saturable absorber and fibers, which is favorable for high‐performance ultrafast photonic devices.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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