TY - JOUR
T1 - Single whispering-gallery mode lasing in polymer bottle microresonators via spatial pump engineering
AU - Gu, Fuxing
AU - Xie, Fuming
AU - Lin, Xing
AU - Linghu, Shuangyi
AU - Fang, Wei
AU - Zeng, Heping
AU - Tong, Limin
AU - Zhuang, Songlin
N1 - Publisher Copyright:
© 2017 The Author.
PY - 2017/10/6
Y1 - 2017/10/6
N2 - Single-mode lasing in whispering-gallery mode (WGM) microresonators is challenging to achieve. In bottle microresonators, the highly non-degenerated WGMs are spatially well-separated along the long-axis direction and provide mode-selection capability. In this work, by engineering the pump intensity to modify the spatial gain profiles of bottle microresonators, we demonstrate a simple and general approach to realizing single-mode WGM lasing in polymer bottle microresonators. The pump intensity is engineered into an interference distribution on the bottle microresonator surface. By tuning the spacing between axial positions of the interference pump patterns, the mode intensity profiles of single-bottle WGMs can be spatially overlapped with the interference stripes, intrinsically enabling single-mode lasing and selection. Attractive advantages of the system, including high side-mode suppression factors >20 dB, large spectral tunability >8 nm, low-lasing threshold and reversible control, are presented. Our demonstrated approach may have a variety of promising applications, ranging from tunable single-mode lasing and sensing to nonlinear optics.
AB - Single-mode lasing in whispering-gallery mode (WGM) microresonators is challenging to achieve. In bottle microresonators, the highly non-degenerated WGMs are spatially well-separated along the long-axis direction and provide mode-selection capability. In this work, by engineering the pump intensity to modify the spatial gain profiles of bottle microresonators, we demonstrate a simple and general approach to realizing single-mode WGM lasing in polymer bottle microresonators. The pump intensity is engineered into an interference distribution on the bottle microresonator surface. By tuning the spacing between axial positions of the interference pump patterns, the mode intensity profiles of single-bottle WGMs can be spatially overlapped with the interference stripes, intrinsically enabling single-mode lasing and selection. Attractive advantages of the system, including high side-mode suppression factors >20 dB, large spectral tunability >8 nm, low-lasing threshold and reversible control, are presented. Our demonstrated approach may have a variety of promising applications, ranging from tunable single-mode lasing and sensing to nonlinear optics.
UR - https://www.scopus.com/pages/publications/85030719519
U2 - 10.1038/lsa.2017.61
DO - 10.1038/lsa.2017.61
M3 - 文章
AN - SCOPUS:85030719519
SN - 2047-7538
VL - 6
JO - Light: Science and Applications
JF - Light: Science and Applications
IS - 10
M1 - e17061
ER -