TY - JOUR
T1 - Recent Progress in Dynamically Modulating Lasing Mode Based on External Physical Fields
AU - Lu, Junfeng
AU - Peng, Yiyao
AU - Ma, Wenda
AU - Yang, Zheng
AU - Li, Fangtao
AU - Xu, Chunxiang
AU - Pan, Caofeng
N1 - Publisher Copyright:
© 2025 Wiley-VCH GmbH.
PY - 2026/1/22
Y1 - 2026/1/22
N2 - The research and development of wavelength-tunable lasers has always attracted much attention due to their huge potential applications in the fields of biomedicine, spectroscopy, information science, and integrated optics. Semiconductor materials with asymmetric center structures, such as ZnO, GaN, CdS, and perovskite, exhibit both piezoelectric and piezoresistive effects, which provide a feasible path for the realization of lasing mode selective output and dynamic modulation. In this review, the dynamic regulation of lasing mode output is obtained in different semiconductor optical cavity in succeed, and realized the single-mode laser by utilizing the synergistic effect of piezoelectricity and piezoresistivity. In addition, the application of this modulated method in the field of nonlinear optics and strain sensing is also further explored and expanded. This series of research results fully proves that this modulation mechanism is not only suitable for the dynamic regulation of the resonant frequency of cavity mode in different material systems, but also provides an effective strategy for the development of a new type of non-contact, high-precision strain sensors by taking advantage of the ultra-narrow pulse width lasing mode-shift.
AB - The research and development of wavelength-tunable lasers has always attracted much attention due to their huge potential applications in the fields of biomedicine, spectroscopy, information science, and integrated optics. Semiconductor materials with asymmetric center structures, such as ZnO, GaN, CdS, and perovskite, exhibit both piezoelectric and piezoresistive effects, which provide a feasible path for the realization of lasing mode selective output and dynamic modulation. In this review, the dynamic regulation of lasing mode output is obtained in different semiconductor optical cavity in succeed, and realized the single-mode laser by utilizing the synergistic effect of piezoelectricity and piezoresistivity. In addition, the application of this modulated method in the field of nonlinear optics and strain sensing is also further explored and expanded. This series of research results fully proves that this modulation mechanism is not only suitable for the dynamic regulation of the resonant frequency of cavity mode in different material systems, but also provides an effective strategy for the development of a new type of non-contact, high-precision strain sensors by taking advantage of the ultra-narrow pulse width lasing mode-shift.
KW - laser
KW - mode regulation
KW - piezoelectric effect
KW - piezoresistive effect
KW - strain sensors
UR - https://www.scopus.com/pages/publications/105018819218
U2 - 10.1002/lpor.202501881
DO - 10.1002/lpor.202501881
M3 - 文献综述
AN - SCOPUS:105018819218
SN - 1863-8880
VL - 20
JO - Laser and Photonics Reviews
JF - Laser and Photonics Reviews
IS - 2
M1 - e01881
ER -