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Reduced wavelength-dependent quarter-wave plate fabricated by a multilayered subwavelength structure

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APPLIED OPTICS
卷 45, 期 12, 页码 2601-2606

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OPTICAL SOC AMER
DOI: 10.1364/AO.45.002601

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We developed a novel fabrication method of a reduced wavelength-dependent quarter-wave plate (QAT) based on form birefringence of a multilayered subwavelength structure. The multilayered structure was constructed by depositing a high-refractive-index thin film on a subwavelength-structured substrate with a low refractive index. The surface structure of the substrate was shallow enough to be formed by a mass replication technology. A high-refractive-index subwavelength grating was formed on ridges of the substrate by sputtering Zn2SnO4 (refractive index of 2.03 at a wavelength of 633 nm). Moreover, since the grooves of the high-refractive-index grating were very deep and narrow, the dispersion of form birefringence suppressed the dependency of phase retardance on the wavelength of light in a limited spectral region. The phase retardance of the fabricated QWP was 89 degrees at a 633 nm wavelength and 79 degrees at a 785 nm wavelength. (c) 2006 Optical Society of America.

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