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Erschienen in: Optical and Quantum Electronics 8/2018

01.08.2018

High-reflectivity non-periodic sub-wavelength gratings with small-angle beam-steering ability and its application in Fabry–Perot cavity

Erschienen in: Optical and Quantum Electronics | Ausgabe 8/2018

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Abstract

We report a high-reflectivity non-periodic sub-wavelength gratings (SWGs) mirror with small-angle beam-steering ability for reflect light. It presents a distinctive characteristic of flexibly controlling the width of oscillation optical field for the improved Fabry–Perot (F–P) cavity. We propose a detailed principle analysis of the improved cavity. By finding out a set of SWGs with the designed structural parameters, both high reflectivity (> 93%) and beam steering (1°) can be implemented. By setting beam-steering angle and cavity length, we can control the width of oscillation optical field in the improved cavity. Beam steering ability and property of controlling the oscillation width are numerically investigated by finite element method. Simulation results prove that cavity length and steering angle can effectively control the main width of oscillation optical field, and the width is linearly associated with the cavity length.

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Literatur
Zurück zum Zitat Bathe, K.: Finite Element Method. Wiley Encyclopedia of Computer Science and Engineering, pp. 394–409. Wiley, New York (2000) Bathe, K.: Finite Element Method. Wiley Encyclopedia of Computer Science and Engineering, pp. 394–409. Wiley, New York (2000)
Zurück zum Zitat Carletti, L., Malureanu, R., Mørk, J., Chung, I.S.: High-index-contrast grating reflector with beam steering ability for the transmitted beam. Opt. Express 19, 23567–23572 (2011)ADSCrossRef Carletti, L., Malureanu, R., Mørk, J., Chung, I.S.: High-index-contrast grating reflector with beam steering ability for the transmitted beam. Opt. Express 19, 23567–23572 (2011)ADSCrossRef
Zurück zum Zitat Chen, H., Liang, Y.: Analysis of the tunable asymmetric fiber F–P cavity for fiber sensor edge-filter demodulation. Photonic Sens. 4, 338–343 (2014)ADSCrossRef Chen, H., Liang, Y.: Analysis of the tunable asymmetric fiber F–P cavity for fiber sensor edge-filter demodulation. Photonic Sens. 4, 338–343 (2014)ADSCrossRef
Zurück zum Zitat Fang, W., Huang, Y., Duan, X., Liu, K., Fei, J., Ren, X.: High-reflectivity high-contrast grating focusing reflector on silicon-on-insulator wafer. Chin. Phys. B 25, 306–310 (2016) Fang, W., Huang, Y., Duan, X., Liu, K., Fei, J., Ren, X.: High-reflectivity high-contrast grating focusing reflector on silicon-on-insulator wafer. Chin. Phys. B 25, 306–310 (2016)
Zurück zum Zitat Fattal, D., Li, J., Peng, Z., Fiorentino, M., Beausoleil, R.G.: Flat dielectric grating reflectors with focusing abilities. Nat. Photonics 4, 466–470 (2010)ADSCrossRef Fattal, D., Li, J., Peng, Z., Fiorentino, M., Beausoleil, R.G.: Flat dielectric grating reflectors with focusing abilities. Nat. Photonics 4, 466–470 (2010)ADSCrossRef
Zurück zum Zitat Gong, Y., Zhao, T., Rao, Y. J., Wu, Y., Guo, Y.: A ray-transfer-matrix model for hybrid fiber Fabry–Perot sensor based on graded-index multimode fiber. Opt. Express 18, 15844–15852 (2010)ADSCrossRef Gong, Y., Zhao, T., Rao, Y. J., Wu, Y., Guo, Y.: A ray-transfer-matrix model for hybrid fiber Fabry–Perot sensor based on graded-index multimode fiber. Opt. Express 18, 15844–15852 (2010)ADSCrossRef
Zurück zum Zitat Guo, C., Ye, W., Yuan, X., Zeng, C., Ji, J.: Research on sub-wavelength grating polarizing beam splitter. Acta Opt. Sin. 30, 2690–2695 (2010)CrossRef Guo, C., Ye, W., Yuan, X., Zeng, C., Ji, J.: Research on sub-wavelength grating polarizing beam splitter. Acta Opt. Sin. 30, 2690–2695 (2010)CrossRef
Zurück zum Zitat Karagodsky, V., Sedgwick, F.G., Changhasnain, C.J.: Theoretical analysis of subwavelength high contrast grating reflectors. Opt. Express 18, 16973–16988 (2010)ADSCrossRef Karagodsky, V., Sedgwick, F.G., Changhasnain, C.J.: Theoretical analysis of subwavelength high contrast grating reflectors. Opt. Express 18, 16973–16988 (2010)ADSCrossRef
Zurück zum Zitat Ma, C., Huang, Y., Duan, X., Ren, X.: High-transmittivity non-periodic sub-wavelength high-contrast grating with large-angle beam-steering ability. Chin. Opt. Lett. 12, 5–8 (2014) Ma, C., Huang, Y., Duan, X., Ren, X.: High-transmittivity non-periodic sub-wavelength high-contrast grating with large-angle beam-steering ability. Chin. Opt. Lett. 12, 5–8 (2014)
Zurück zum Zitat Mateus, C.F.R., Huang, M.C.Y., Deng, Y., Neureuther, A.R.: Ultrabroadband mirror using low-index cladded subwavelength grating. Photonics Technol. Lett. IEEE 16, 518–520 (2004)ADSCrossRef Mateus, C.F.R., Huang, M.C.Y., Deng, Y., Neureuther, A.R.: Ultrabroadband mirror using low-index cladded subwavelength grating. Photonics Technol. Lett. IEEE 16, 518–520 (2004)ADSCrossRef
Zurück zum Zitat Moharam, M.G., Gaylord, T.K.: Regorous theory of planar-reflection-grating diffraction (a). J. Opt. Soc. Am. 72, 1917–1983 (1982) Moharam, M.G., Gaylord, T.K.: Regorous theory of planar-reflection-grating diffraction (a). J. Opt. Soc. Am. 72, 1917–1983 (1982)
Zurück zum Zitat Ouyang, C., Ping, S., Wu, K.: High pulse energy all-fiber F–P cavity dissipative soliton laser. IEEE Photonics Technol. Lett. 25, 303–305 (2013)ADSCrossRef Ouyang, C., Ping, S., Wu, K.: High pulse energy all-fiber F–P cavity dissipative soliton laser. IEEE Photonics Technol. Lett. 25, 303–305 (2013)ADSCrossRef
Zurück zum Zitat Pommet, D.A., Grann, E.B., Moharam, M.G., Gaylord, T.K.: Formulation for stable and efficient implementation of the rigorous coupled-wave analysis of binary gratings. J. Opt. Soc. Am. A 12, 1068–1076 (1995)ADSCrossRef Pommet, D.A., Grann, E.B., Moharam, M.G., Gaylord, T.K.: Formulation for stable and efficient implementation of the rigorous coupled-wave analysis of binary gratings. J. Opt. Soc. Am. A 12, 1068–1076 (1995)ADSCrossRef
Zurück zum Zitat Ren, Q., Li, J., Hong, Y., Jia, P., Xiong, J.: An arc tangent function demodulation method of fiber-optic Fabry–Perot high-temperature pressure sensor. Photonic Sens. 7, 211–216 (2017)ADSCrossRef Ren, Q., Li, J., Hong, Y., Jia, P., Xiong, J.: An arc tangent function demodulation method of fiber-optic Fabry–Perot high-temperature pressure sensor. Photonic Sens. 7, 211–216 (2017)ADSCrossRef
Zurück zum Zitat Wang, T., Chen, N., Zhao, Z., Pang, F., Chen, Z., Wang, T.: All-fiber power sensor based on silicon-germanium core fiber F–P cavity. J. Phys: Conf. Ser. 844, 012036 (2017) Wang, T., Chen, N., Zhao, Z., Pang, F., Chen, Z., Wang, T.: All-fiber power sensor based on silicon-germanium core fiber F–P cavity. J. Phys: Conf. Ser. 844, 012036 (2017)
Zurück zum Zitat Zhao, H., Peng, Y., Tan, J., Liao, C., Li, P., Ren, X.: Optimal design of sub-wavelength metal rectangular gratings for polarizing beam splitter based on effective medium theory. Chin. Phys. B 18, 5326–5330 (2009)ADSCrossRef Zhao, H., Peng, Y., Tan, J., Liao, C., Li, P., Ren, X.: Optimal design of sub-wavelength metal rectangular gratings for polarizing beam splitter based on effective medium theory. Chin. Phys. B 18, 5326–5330 (2009)ADSCrossRef
Zurück zum Zitat Zhou, Y., Huang, M.C.Y., Chase, C., Karagodsky, V., Moewe, M., Pesala, B.: High-index-contrast grating (HCG) and its applications in optoelectronic devices. IEEE J. Sel. Top. Quantum Electron. 15, 1485–1499 (2009)ADSCrossRef Zhou, Y., Huang, M.C.Y., Chase, C., Karagodsky, V., Moewe, M., Pesala, B.: High-index-contrast grating (HCG) and its applications in optoelectronic devices. IEEE J. Sel. Top. Quantum Electron. 15, 1485–1499 (2009)ADSCrossRef
Metadaten
Titel
High-reflectivity non-periodic sub-wavelength gratings with small-angle beam-steering ability and its application in Fabry–Perot cavity
Publikationsdatum
01.08.2018
Erschienen in
Optical and Quantum Electronics / Ausgabe 8/2018
Print ISSN: 0306-8919
Elektronische ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-018-1570-5

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