TY - JOUR
T1 - Recent advances and future outlook in mode-locked lasers with multimode fibers
AU - Fu, Bo
AU - Shang, Ce
AU - Liu, Hengyu
AU - Fan, Shuzheng
AU - Zhao, Kangjun
AU - Zhang, Yule
AU - Wageh, Swelm
AU - Al-Ghamdi, Ahmed
AU - Wang, Xiaogang
AU - Xu, Lijun
AU - Xiao, Xiaosheng
AU - Zhang, Han
N1 - Publisher Copyright:
© 2023 Author(s).
PY - 2023/12/1
Y1 - 2023/12/1
N2 - Multimode fibers (MMFs) have attracted interest because of their larger mode area and additional spatial degrees of freedom compared with single-mode fibers. Recently, MMFs have been introduced into mode-locked lasers for new cavity structures with better laser performance. Among these lasers, there are two remarkable cases in which MMFs are the key components for mode-locking: One is using a short segment of the MMF as a saturable absorber (SA), which has the advantages of high damage threshold, wide operating bandwidth, and low cost. The other is the construction of multimode cavities with MMFs. Spatiotemporal mode-locking (STML), a general form of mode-locking, can be achieved in such cavities. Herein, we review these two types of mode-locked lasers with MMFs. The principles of MMF-based SA and STML are described based on the common theory of multimode nonlinear fiber optics. Subsequently, we present a detailed overview of the recent progress regarding these lasers, including lasers mode-locked by MMF-based SAs at the 1-, 1.5-, and 2-μm bands, as well as spatiotemporal mode-locked MMF lasers. A perspective for the development of mode-locked lasers with MMFs is also provided.
AB - Multimode fibers (MMFs) have attracted interest because of their larger mode area and additional spatial degrees of freedom compared with single-mode fibers. Recently, MMFs have been introduced into mode-locked lasers for new cavity structures with better laser performance. Among these lasers, there are two remarkable cases in which MMFs are the key components for mode-locking: One is using a short segment of the MMF as a saturable absorber (SA), which has the advantages of high damage threshold, wide operating bandwidth, and low cost. The other is the construction of multimode cavities with MMFs. Spatiotemporal mode-locking (STML), a general form of mode-locking, can be achieved in such cavities. Herein, we review these two types of mode-locked lasers with MMFs. The principles of MMF-based SA and STML are described based on the common theory of multimode nonlinear fiber optics. Subsequently, we present a detailed overview of the recent progress regarding these lasers, including lasers mode-locked by MMF-based SAs at the 1-, 1.5-, and 2-μm bands, as well as spatiotemporal mode-locked MMF lasers. A perspective for the development of mode-locked lasers with MMFs is also provided.
UR - https://www.scopus.com/pages/publications/85176573873
U2 - 10.1063/5.0129662
DO - 10.1063/5.0129662
M3 - 文献综述
AN - SCOPUS:85176573873
SN - 1931-9401
VL - 10
JO - Applied Physics Reviews
JF - Applied Physics Reviews
IS - 4
M1 - 041305
ER -