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Article

Enhanced wavelength-sensitivity of volume holographic grating with dual-photoinitiation system in polymer-dispersed liquid crystal

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Pages 570-576 | Received 18 Jul 2018, Accepted 14 Aug 2018, Published online: 30 Aug 2018

References

  • Psaltis D, Mok F. Holographic memories. Sci Am. 1995;273(5):70–76.
  • Smalley DE, Smithwick QYJ, Bove VM, et al. Anisotropic leaky-mode modulator for holographic video displays. Nature. 2013;498(7454):313–317.
  • Zhou CC, Fu Z, Chen RT, et al. Dispersion correction of surface-normal optical interconnection using two compensated holograms. Appl Phys Lett. 1998;72(25):3249–3251.
  • Cao LC, Wu SH, Hao JP, et al. Enhanced diffraction efficiency of mixed volume gratings with nanorod dopants in polymeric nanocomposite. Appl Phys Lett. 2017;111(14):141104.
  • Bunning TJ, Natarajan LV, Tondiglia VP, et al. Holographic polymer-dispersed liquid crystals (H-PDLCs). Annu Rev Mater Sci. 2000;30(1):83–115.
  • Zheng ZG, Zhou L, Shen D, et al. Holographic polymer-dispersed liquid crystal grating with low scattering losses. Liq Cryst. 2012;39(3):387–391.
  • Li HJ, Wang CS, Pan YJ, et al. Transient holographic grating in azo-dye-doped liquid crystals with off-resonant light. Liq Cryst. 2017;44(6):933–938.
  • Fox AE, Rai K, Fontecchio AK. Holographically formed polymer dispersed liquid crystal films for transmission mode spectrometer applications. Appl Opt. 2007;46(25):6277–6282.
  • Diao ZH, Huang WB, Peng ZH, et al. Anisotropic waveguide theory for electrically tunable distributed feedback laser from dye-doped holographic polymer dispersed liquid crystal. Liq Cryst. 2014;41(2):239–246.
  • Li Y, Du QG, Liu ZD, et al. Pump angle and position effects on laser emission from quasicrystal microcavity by nine-beam interference based on holographic polymer-dispersed liquid crystals. Liq Cryst. 2018;45(3):415–420.
  • Huang SJ, Li Y, Zhou PC, et al. Polymer network liquid crystal grating/Fresnel lens fabricated by holography. Liq Cryst. 2017;44(5):873–879.
  • Wang KN, Zheng JH, Liu YR, et al. Wide-viewing-angle switchable image splitter obtained using varied-line-spacing H-PDLC Bragg grating. Liq Cryst. 2017;44(9):1365–1373.
  • Chen G, Ni M, Peng H, et al. Photoinitiation and inhibition under monochromatic green light for storage of colored 3D images in holographic polymer dispersed liquid crystals. Acs Appl Mater Interfaces. 2017;9(2):1810–1819.
  • Peng H, Bi S, Ni M, et al. Monochromatic visible light “photoinitibitor”: janus-faced initiation and inhibition for storage of colored 3D images. J Am Chem Soc. 2014;136(25):8855–8858.
  • Natarajan LV, Shepherd CK, Brandelik DM, et al. Switchable holographic polymer-dispersed liquid crystal reflection gratings based on thiol-ene photopolymerization. Chem Mater. 2003;15(12):2477–2484.
  • Natarajan LV, Brown DP, Wofford JM, et al. Holographic polymer dispersed liquid crystal reflection gratings formed by visible light initiated thiol-ene photopolymerization. Polymer. 2006;47(12):4411–4420.
  • Ramsey RA, Sharma SC. Switchable holographic gratings formed in polymer-dispersed liquid-crystal cells by use of a He-Ne laser. Opt Lett. 2005;30(6):592–594.
  • Chien C-Y, Sheu C-R. Small dosage of holographic exposure via a He-Ne laser to fabricate tunable liquid crystal phase gratings operated with low electric voltages. Liq Cryst. 2017;44(5):854–862.
  • Pilot P, Boiko Y, Galstian TV. Near-IR (800 to 855 nm) sensitive holographic photopolymer dispersed liquid crystal materials. Proc SPIE. 1999;3635:143–150.
  • Wang KN, Zheng JH, Gao H, et al. Tri-color composite volume H-PDLC grating and its application to 3D color autostereoscopic display. Opt Express. 2015;23(24):31436–31445.
  • Ni ML, Peng HY, Liao YG, et al. 3D image storage in photopolymer/ZnS nanocomposites tailored by “photoinitibitor”. Macromolecules. 2015;48(9):2958–2966.

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