.

Dr Kaiming Zhouhttp://www1.aston.achttp://www1.aston.ac.uk/EasySiteWeb/EasySite/SupportFiles/Images/SilverToolbar/icon_insert_hyperlink.gif.uk/EasySiteWeb/EasySite/SupportFiles/Images/SilverToolbar/icon_insert_hyperlink.gif

KZhou

Senior Research Fellow

Room: NW 316
Tel: 00 44 121 204 3504
email: k.zhou@aston.ac.uk

Publication

  1. K. Zhou, Z.Yan, L.Zhang, and I.Bennion, "Refractometer based on fiber Bragg grating Fabry-Pérot cavity embedded with a narrow microchannel," Opt. Express 19, 11769-11779 (2011) 

  2. K.Zhou, Lin Zhang; Xianfeng Chen; Vladimir Mezentsev; Ian Bennion, “Microstructures made in optical fiber with femtosecond laser,” International Journal of Smart and Nano Materials, 1(4), 237 – 248 (2010)

  3. K.Zhou, M.Dubov, C.Mou, L.Zhang, V.Mezentsev, I.Bennion, “Line-by-Line Fiber Bragg Grating Made by Femtosecond laser”, Photonic Technology Letter, 22(16), 1041-1135(2010)

  4. K.Zhou,D.Webb, C.Mou, M.Farries, N.Hayes, I.Bennion, “Optical Fiber Cavity Ring Down Measurement of RefractiveIndex a Microchannel Drilled by Femtosecond Laser”, Photonic Technology Letter, 21(22), 1653-1655(2009).

  5. K.Zhou, D.Webb, M.Farries,N.Hayes,L.Zhang,I.Bennion, “Biochemical sensor based on a novel all-fibre cavity ring down spectroscopy technique incorporating a tilted fibre Bragg grating”, Optics and Lasers in Engineering, 47(10), 1023-1027, (2009)

  6. K. Zhou, X. Chen, Y. Lai, K. Sugden, L. Zhang, and I. Bennion, “In-fiber polymer–glass hybrid waveguide Bragg grating”, Opt. Lett., 33(15), 1650-1652 (2008)

  7. K. Zhou, Y. Lai, X. Chen, K. Sugden, L. Zhang, and I. Bennion, "A refractometer based on a micro-slot in a fiber Bragg grating formed by chemically assisted femtosecond laser processing," Opt. Express, 15(24), 15848-15853 (2007)

  8. K.Zhou, L.Zhang, X.Chen and I.Bennion, “Low thermal sensitivity grating devices based on ex-45o tilting structure capable of forward propagating cladding modes coupling”, J. Lightw. Technol., 24(12), 5087-5094 (2006)

  9. K.Zhou, L.Zhang, X.Chen, and I.Bennion, “Optic sensors of high refractive index responsivity and low thermal cross sensitivity utilizing fiber Bragg gratings of >80-tilted structures”, Opt. Lett.,31(9), 1193-1195(2006)

  10. K.Zhou, X.Chen, L.Zhang and I.Bennion, “Implement of optical chemsensors based on HF-etched fibre Bragg grating structures”, Meas. Sci. Technol.,,17(5), 1140-1145(2006).

  11. K.Zhou, A.G.Simpson, X.Chen, L.Zhang and I.Bennion, “High extinction ratio in-fibre polariser based on a 45 º-tilted fibre Bragg grating”, Opt. Lett.,30(11), 1285-1287(2005).

  12. K.Zhou, A.G.Simpson, X.Chen, L.Zhang and I.Bennion, “Fibre Bragg grating sensor interrogation system using a CCD side detection method with superimposed blazed gratings”, IEEE Photon. Technol. Lett.16(6), 1549-1551(2004).

  13. K.Zhou, X.Chen, L.Zhang and I.Bennion, “High-sensitivity optical chemsensor based on etched D-fibre Bragg gratings”, Electron. Lett.40(4), 232-234(2004).

  14. K.Zhou, A.G.Simpson, L.Zhang, and I.Bennion, “Two-dimensional optical power distribution of side-out coupled radiation from tilted FBGs in multimode fibre”, Electron. Lett.39(8), 651-653(2003).

  15. K.Zhou, A.G.Simpson, L.Zhang and I.Bennion, “Side-detection of strong radiation mode out-coupling from blazed FBGs in single-mode and multi-mode fibers”, IEEE Photon. Technol. Lett.15(7), 936-938(2003).

  16. K.Zhou, H. Liu, X.Hu, “Tuning the resonant wavelength of long period fiber gratings by etching the fiber's cladding “, Optics Communications, 197(4-6), 295-299(2001).

Full list >>