TY - JOUR
T1 - Wavelength-tunable broadband lasers based on nanomaterials
AU - Zhang, Chenxi
AU - Zhang, Congyu
AU - Li, Yiwei
AU - Shi, Yaran
AU - Chao, Jiale
AU - Zhao, Yifan
AU - Yang, He
AU - Fu, Bo
N1 - Publisher Copyright:
© 2023 IOP Publishing Ltd
PY - 2023/12/3
Y1 - 2023/12/3
N2 - Nanomaterials are widely used in the fields of sensors, optoelectronics, biophotonics and ultrafast photonics due to their excellent mechanical, thermal, optical, electrical and magnetic properties. Particularly, owing to their nonlinear optical properties, fast response time and broadband operation, nanomaterials are ideal saturable absorption materials in ultrafast photonics, which contribute to the improvement of laser performance. Therefore, nanomaterials are of great importance to applications in wavelength-tunable broadband pulsed lasers. Herein, we review the integration and applications of nanomaterials in wavelength-tunable broadband ultrafast photonics. Firstly, the two integration methods, which are direct coupling and evanescent field coupling, and their characteristics are introduced. Secondly, the applications of nanomaterials in wavelength-tunable broadband lasers are summarized. Finally, the development of nanomaterials and broadband tunable lasers is reviewed and discussed.
AB - Nanomaterials are widely used in the fields of sensors, optoelectronics, biophotonics and ultrafast photonics due to their excellent mechanical, thermal, optical, electrical and magnetic properties. Particularly, owing to their nonlinear optical properties, fast response time and broadband operation, nanomaterials are ideal saturable absorption materials in ultrafast photonics, which contribute to the improvement of laser performance. Therefore, nanomaterials are of great importance to applications in wavelength-tunable broadband pulsed lasers. Herein, we review the integration and applications of nanomaterials in wavelength-tunable broadband ultrafast photonics. Firstly, the two integration methods, which are direct coupling and evanescent field coupling, and their characteristics are introduced. Secondly, the applications of nanomaterials in wavelength-tunable broadband lasers are summarized. Finally, the development of nanomaterials and broadband tunable lasers is reviewed and discussed.
KW - nanomaterials
KW - ultrafast lasers
KW - wavelength-tunable
UR - https://www.scopus.com/pages/publications/85172033996
U2 - 10.1088/1361-6528/acf66d
DO - 10.1088/1361-6528/acf66d
M3 - 文献综述
C2 - 37666227
AN - SCOPUS:85172033996
SN - 0957-4484
VL - 34
JO - Nanotechnology
JF - Nanotechnology
IS - 49
M1 - 492001
ER -