Infrared and Laser Engineering, Volume. 51, Issue 10, 20220491(2022)
In-situ measurement of effective refractive index of glass waveguides (invited)
[1] Shufeng Sun, Pingping Wang. Micro/nano structures fabricated by two-photon photopolymerization of femtosecond laser. Infrared and Laser Engineering, 47, 1206009(2018).
[2] S Gross, N Riesen, J D Love, et al. Three-dimensional ultra-broadband integrated tapered mode multiplexers. Laser & Photonics Reviews, 8, L81-L85(2014).
[3] S Gross, M J Withford. Ultrafast-laser-inscribed 3D integrated photonics: challenges and emerging applications. Nanophotonics, 4, 332-352(2015).
[4] Zhiming Li, Xi Wang, Jinsong Nie, et al. High frequency femtosecond laser induced periodic spatial structure on silicon surface. Infrared and Laser Engineering, 47, 0106003(2018).
[5] Bin Zhang, Ziqi Li, Lei Wang, et al. Research advances in laser crystal optical waveguides fabricated by femtosecond laser direct writing. Laser & Optoelectronics Progress, 57, 111415(2020).
[6] F Yu, X L Zhang, Z N Tian, et al. General rules governing the dynamical encircling of an arbitrary number of exceptional points. Physical Review Letters, 127, 253901(2021).
[7] C R Ocier, C A Richards, D A Bacon-Brown, et al. Direct laser writing of volumetric gradient index lenses and waveguides. Light: Science & Applications, 9, 196(2020).
[8] A Cerjan, M Wang, S Huang. Thouless pumping in disordered photonic systems. Light: Science & Applications, 9, 178(2020).
[9] E Goi, Q Zhang, X Chen, et al. Perspective on photonic memristive neuromorphic computing. PhotoniX, 1, 3(2020).
[10] Y Zhang, J Wu, L Wang, et al. Femtosecond laser direct writing of Nd: YAG waveguide with Type I modification: Positive refractive index change in track. Optical Materials, 113, 110844(2021).
[11] El-Din M A Shams, M Koerdt, C Wochnowski, et al. Investigation of a UV-laser generated waveguide in a planar polymer chip using an improved interferometric method. Optics and Lasers in Engineering, 50, 405-412(2012).
[12] J Park, B Lee. An Approximate formula of the effective refractive index of the metal-insulator-metal surface plasmon polariton waveguide in the infrared region. Japanese Journal of Applied Physics, 47, 8449-8451(2008).
[13] W S Tsai, S Y Ting, P K Wei. Refractive index profiling of an optical waveguide from the determination of the effective index with measured differential fields. Opt Express, 20, 26766-26777(2012).
[14] V A Popescu. Determination of propagation constants in a Ti: LiNbO3 optical waveguide by using finite element and variational methods. Optics Communications, 250, 274-279(2005).
[15] D Homoelle, S Wielandy, A L Gaeta, et al. Infrared photosensitivity in silica glasses exposed to femtosecond laser pulses. Optics Letters, 24, 1311-1313(1999).
[16] Y Dattner, O Yadid-Pecht. Analysis of the effective refractive index of silicon waveguides through the constructive and destructive interference in a Mach-Zehnder interferometer. IEEE Photonics Journal, 3, 1123-1132(2011).
[17] [17] Matthias W, Jonas B, Stefan N, et al. Measurement of fs laserinduced refractive index changes using an integrated optical interferometer [C]SPIE, 2003, 4978: 214221.
Get Citation
Copy Citation Text
Xiaoyan Li, Yichun Li, Zhongtian Li, Yingde Wang, Licheng Wang, Yanhui Wang, Zhennan Tian. In-situ measurement of effective refractive index of glass waveguides (invited)[J]. Infrared and Laser Engineering, 2022, 51(10): 20220491
Category: Special issue-High-temperature sensing technology based on micro/nano optical structure
Received: Jul. 14, 2022
Accepted: --
Published Online: Jan. 6, 2023
The Author Email: Wang Yanhui (yanhuiwang@jlu.edu.cn)