[1] Yanxiang ZHANG, Mingkai WANG, Zibo NING et al. Temporal effect on tight focusing, optical force and spin torque of high-order vector-vortex beams. Optics & Laser Technology, 149, 107844(2022).
[2] R FICKLER, R LAPKIEWICZ, W N PLICK et al. Quantum entanglement of high angular momenta. Science, 338, 640-643(2012).
[3] S SYUBAEV, A ZHIZHCHENKO, A KUCHMIZHAK et al. Direct laser printing of chiral plasmonic nanojets by vortex beams. Optics Express, 25, 10214-10223(2017).
[4] Y C SHIN, B WU, S LEI et al. Overview of laser applications in manufacturing and materials processing in recent years. Journal of Manufacturing Science and Engineering, 142, 110818(2020).
[5] S NGCOBO, I LITVIN, L BURGER et al. A digital laser for on-demand laser modes. Nature Communications, 4, 2289(2013).
[6] J ZHENG, A YANG, T WANG et al. Wavelength-switchable vortex beams based on a polarization-dependent microknot resonator. Photonics Research, 6, 396-402(2018).
[7] L TALAVERANO, S ABAD, S JARABO et al. Multiwavelength fiber laser sources with Bragg-grating sensor multiplexing capability. Journal of Lightwave Technology, 19, 553-558(2001).
[8] Xinhuan FENG, Yange LIU, Shenggui FU et al. Switchable dual-wavelength ytterbium-doped fiber laser based on a few-mode fiber grating. IEEE Photonics Technology Letters, 16, 762-764(2004).
[9] Luna ZHANG, Fengping YAN, Ting FENG et al. Six-wavelength-switchable narrow-linewidth thulium-doped fiber laser with polarization-maintaining sampled fiber Bragg grating. Optics & Laser Technology, 136, 106788(2021).
[10] Chuanhang ZOU, Tianxing WANG, Zhijun YAN et al. Wavelength-tunable passively mode-locked Erbium-doped fiber laser based on carbon nanotube and a 45 tilted fiber grating. Optics Communications, 406, 151-157(2018).
[11] Zihao ZHAO, Xiaolei LI, Yue LI et al. Multiwavelength Er-doped fiber laser using an all-fiber Lyot filter. Applied Optics, 57, 9270-9274(2018).
[12] Shilong PAN, Caiyun LOU, Yizi GAO. Multiwavelength erbium-doped fiber laser based on inhomogeneous loss mechanism by use of a highly nonlinear fiber and a Fabry-Perot filter. Optics Express, 14, 1113-1118(2006).
[13] Huade ZHANG, Xilun GAO, Yonghang SHEN. 1 570 nm and 1 548 nm Dual-wavelength Single-frequency Er-doped Fiber Laser. Acta Photonica Sinica, 52, 0214002(2023).
[14] B IBARRA-ESCAMILLA, M V HERNÁNDEZ-ARRIAGA, M DURÁN-SÁNCHEZ et al. Abrupt-tapered fiber filter arrangement for a switchable multi-wavelength and tunable Tm-doped fiber laser. Optics Express, 26, 14894-14904(2018).
[15] Biao SUN, Anting WANG, Lixin XU et al. Transverse mode switchable fiber laser through wavelength tuning. Optics Letters, 38, 667-669(2013).
[16] Kang YANG, Y G LIU, Zhi WANG et al. Five-wavelength-switchable all-fiber erbium-doped laser based on few-mode tilted fiber Bragg grating. Optics & Laser Technology, 108, 273-278(2018).
[17] Ruishan CHEN, Jinghao WANG, Xiaoqiang ZHANG et al. High efficiency all-fiber cylindrical vector beam laser using a long-period fiber grating. Optics Letters, 43, 755-758(2018).
[18] K J PARK, K Y SONG, Y K KIM et al. Broadband mode division multiplexer using all-fiber mode selective couplers. Optics Express, 24, 3543-3549(2016).
[19] S WITTEK, R B RAMIREZ, J A ZACARIAS et al. Mode-selective amplification in a large mode area Yb-doped fiber using a photonic lantern. Optics Letters, 41, 2157-2160(2016).
[20] Hongxun LI, Ke YAN, Zhipeng DONG et al. Multi-wavelength oscillating and transverse mode switching in an all few-mode fiber laser based on polarization manipulation. Optics & Laser Technology, 117, 110-113(2019).
[21] Kai CHEN, Wentan FANG, Xiaohui Ma et al. Spatial mode and wavelength switchable erbium-doped fiber laser based on a fiber beam shaper. Optics Express, 30, 47452-47462(2022).
[22] Yimin ZHANG, Hongxun LI, Chuansheng DAI et al. An all-fiber laser oscillating directly at a single TE01 mode with ring-core fibers. Applied Physics Express, 12, 052001(2019).
[23] R KASHYAP. Fiber bragg gratings(2009).