Presentation 2008-11-14
Fabrication of high performance Volume Phase Holographic (VPH) grating and its application to wavelength demultiplexing device
Yuki KOMAI, Kaoru NAKAJIMA, Kashiko KODATE,
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Abstract(in English) Volume phase holographic (VPH) gratings have the advantages "of high efficiency of nearly 100% under the Bragg condition and possibility of generating a large area by two-beam interference exposure. We optimized the design conditions of VPH grating using Rigorous Coupled-wave Analysis (RCWA) and developed a VPH grating with high resolution and high efficiency to be applied as an optical system. Furthermore, we newly designed and fabricated a VPH grism by sandwiching a VPH grating between prisms. In this report, we demonstrate experimental results and numerical results of the design of VPH grating for near-infrared wavelength region and evaluation of the VPH grism as wavelength demultiplexing device.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Volume Phase Holographic (VPH) grating / wavelength demultiplexing device / Rigorous Coupled-wave Analysis (RCWA) / active phase controlling / diffractive efficiency / wavelength resolution
Paper # OME2008-75,OPE2008-135
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Committee OME
Conference Date 2008/11/7(1days)
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Registration To Organic Material Electronics (OME)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Fabrication of high performance Volume Phase Holographic (VPH) grating and its application to wavelength demultiplexing device
Sub Title (in English)
Keyword(1) Volume Phase Holographic (VPH) grating
Keyword(2) wavelength demultiplexing device
Keyword(3) Rigorous Coupled-wave Analysis (RCWA)
Keyword(4) active phase controlling
Keyword(5) diffractive efficiency
Keyword(6) wavelength resolution
1st Author's Name Yuki KOMAI
1st Author's Affiliation Faculty of Science, Japan Women's University()
2nd Author's Name Kaoru NAKAJIMA
2nd Author's Affiliation Faculty of Science, Japan Women's University
3rd Author's Name Kashiko KODATE
3rd Author's Affiliation Faculty of Science, Japan Women's University
Date 2008-11-14
Paper # OME2008-75,OPE2008-135
Volume (vol) vol.108
Number (no) 293
Page pp.pp.-
#Pages 6
Date of Issue