1. Wang, Sha, Zhang Shu-lin, Li Ping, Hao Mei-hui, Yang Huo-mu, Xie Jian, Feng Guo-ying, and Zhou Shou-huan, "Generation of wavelength- and OAM-tunable vortex beam at low threshold," Opt. Express, 2018, 26, 18164-18170 6 4Wang, Sha, Zhang Shu-lin, Yang Huo-mu, Xie Jian, Feng Guo-ying, and Zhou Shou-huan, Direct emission of chirality controllable femtosecond LG01 vortex beam”, Applied Physics Letters, 2018, 112, 201110 7 4
2. Wang, Sha,Wang, Yan-biao,Feng, Guo-ying,Zhou, Shou-huan, Harmonically mode-locked Yb:CALGO laser pumped by a single-mode 1.2 w laser diode, Optics Express, 2018, 26(2), 1521.
3. Wang, Yan-biao; Wang, Sha* ; Feng Guo-ying* ; Zhou Shou-huan, Laser diode-pumped low timing jitter saturable output coupler Q-switched microchip laser: simulations and experiments, 2017, Opt. Eng. 56(8) 086110
4. Wang, Yan-biao., Wang, Sha*, Feng, Guo-ying*, Zhou, Shou-huan, Sesam combined kerr lens mode locked yb:calgo laser pumped by a 1.2 w single mode fiber coupled laser diode, Laser Physics Letters, 2017, 14(5), 055003.
5. Wang, Yan-biao., Wang, Sha, Feng, Guo-ying, Zhou, Shou-huan, 2017, Rectangular pulsed LD pumped saturable output coupler (SOC) Q-switched microchip laser. SPIE LASE (pp.100820R).
6. Wang, Sha,Wang, Yan-biao,Feng, Guo-ying,Zhou, Shou-huan,Generation of double-scale pulse in a LD pumped Yb:Phosphate solid state laser, Applied Optics,2017, 56(4): 897-900
7. Wang, Sha, Zhao, Zhigang, Kobayashi, Yohei, Wavelength-spacing controllable, dual-wavelength synchronously mode locked Er:fiber laser oscillator based on dual-branch nonlinear polarization rotation technique, Optics Express, 2016, 24(25): 28228-28238
8. Wang, Sha, Wang, Yan-biao,Feng, Guo-ying,Zhou, Shou-huan. A low timing jitter picosecond microchip laser pumped by pulsed LD.?Optics Communications, 2016, 371, 72-75,
9. Wang, Sha ,Wang, Yan-biao,Feng, Guo-ying,Zhou, Shou-huan,SESAMs structure design for GHz femtosecond lasers,Optik -,International Journal for Light and Electron Optics,2016,127(5):2647-2652,
10.Wang, Sha,Wang, Yan-Biao,Feng, Guo-Ying ,Zhou, Shou-Huan,Pump polarization insensitive and efficient laser-diode pumped Yb:KYW ultrafast oscillator.,Applied Optics,2016,55(4):929-934
11.Wang, Sha ,Wang, Yan-biao,Yang, Xian-heng,Feng, Guo-ying,Zhou, Shou-huan,High-efficiency microchip laser with self-injection seeding,Applied Optics,2015,54(35):10304-10308
12.Wang, Sha ,Han, Jing-Hua,Wang, Yan-Biao,Feng, Guo-Ying ,Zhou, Shou-Huan,Robust double Z-type cavity mode locked Yb:KYW ultrafast laser,Optical Engineering,2015,54(12)
13.Wang, Sha,Feng, Guo-ying,Zhou, Shou-huan,SESAM fabrication errors and its influence on ultrafast laser cavity design,Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering),2015,16(4):314-323
14.Sha Wang, Shu-Lin Zhang, Hong-chaoQiao, Ping Li, Mei-huiHao, Huo-Mu Yang, Jian Xie, Guo-Ying Feng, and Shou-huan Zhou, "Direct generation of vortex beams from a double-end polarized pumped Yb:KYW laser," Opt. Express 26, 26925-26932 (2018)
15.Zhang S, Li P, Wang S*, et al. Ultrafast vortices generation at low pump power and shearing interferometer-based vortex topological detection[J]. Laser Physics Letters, 2019, 16(3): 035302.
16.Zhang S, Li P, Wang S*, et al. Direct excitation of chirality controllable LG01 vortex beam in solid-state lasers by intracavity astigmatism manipulation[J]. Laser Physics Letters, 2019, 16(3): 035002.
17.Zhang, S., Hao, M., Wang, S*., Feng, G*., & Zhou, S. (2019). Emission of stable picosecond flat-top beam from passively Q-switched microchip lasers. Optical Engineering, 58(10), 106105.
18.Hao, M., Wang, S., Wang*, Y., Feng, G.*, & Zhou, S. (2019). Timing jitter effect in microchip laser and its reduction by backward reflection in fiber delay line. Optical Engineering, 58(5), 056115.
19.Guo, L., Wang, S*., Feng, G*., & Zhou, S. (2018). Influence of filter shape and bandwidth on noise-like pulse generation in all-normal-dispersion fiber lasers. Optik, 172, 531-539.
20.Wang, Xin,Wang, Sha *,Rhee, Hanjo,Eichler, Hans Joachim,Meister, (*) Stefan,LD end pumped mode locked and cavity dumped Nd:YAP laser at 1.34 μm,Optics Communications,2011,284(12):3014-3017,影响影子1.480,3区
21.Wang, Sha ,Wang, Xin,Rhee, Hanjo,Meister, Stefan,Eichler, Hans Joachim,Chen, Jun,Pulsed Nd:YAP laser at 1432 nm pumped with high power laser diode,Optics Communications,2010,283(14):2881-2884,影响影子1.480,3区
22.Wang, Sha,Rhee, Hanjo,Wang, Xin,Eichler, Hans Joachim,Meister, Stefan,Riesbeck, Thomas,Chen, Jun,LD end pumped, actively mode locked and passively Q-switched Nd:YAP laser at 1341,Optics Communications,2010,283(4):570-573,影响影子1.480,3区
23.Wang, Sha,Eichler, Hans Joachim,Wang, Xin,Kallmeyer, Frank,Ge, Jian-hong,Riesbeck, Thomas,Chen, Jun,Diode end pumped Nd:YAG laser at 946 nm with high pulse energy limited by thermal lensing,Applied Physics B: Lasers and Optics,2009,95(4):721-730,影响影子1.785,3区
24.Wang, Sha ,Wang, Xin,Kallmeyer, Frank,Chen, Jun,Eichler, Hans Joachim,Model of pulsed Nd:GSAG laser at 942 nm conside785ring rate equations with cavity structure,Applied Physics B: Lasers and Optics,2008,92(1):43-48,影响影子1.785,3区
25.莎,陈军,童立新,高清松,刘崇,唐淳,熔石英棒-光纤构成的新型复合相位共轭镜的实验和理论研究,物理学报,2008,57(3):1719-1724,影响影子0.677,4区
26.Wang, Sha ,Chen, Jun,Tong, Lixin,Gao, Qingsong,Liu, Chong ,Tang, Chun,Phase conjugating mirror combining a fused silica rod and a fiber,Optics Letters,2007,32(18):2686-2688,影响影子3.040,2区
27.汪莎,刘崇,陈军,胡淼,陈哲敏,葛剑虹,固体激光器腔型结构对热透镜焦距测量的影响,中国激光,2007,34(10):1431-1435,EI收录
28.汪莎, 陈军, 葛剑虹,等. 工作在1341nm的LD纵向抽运腔倒空锁模Nd∶YAP激光器[J]. 中国激光, 2010(8):1925-1928,EI收录
29.汪莎,陈军, 刘崇,等. 纵向抽运准三能级Yb∶YAG激光器的理论模型及实验研究[J]. 中国激光, 2009, 36(1):23-27,EI收录
30.汪莎, 陈军, 童立新,等. 熔石英棒和光纤构成的新型复合型相位共轭镜[J]. 中国激光, 2007, 34(9):1212-1216,EI收录
31.汪莎, 童立新, 高清松,等. 应用熔石英棒相位共轭镜的LD泵浦激光MOPA系统[J]. 强激光与粒子束, 2007, 19(8):1233-1236,EI收录