The electronic addressed liquid crystal display forms different diffractive optical elements.
該電尋址液晶顯示器可形成不同的衍射光學(xué)元件.
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The diffractive efficiency is measured and the errors are analyzed.
測量了菲涅耳透鏡的衍射效率并分析產(chǎn)生誤差的原因.
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These errors have effects on diffractive efficiencyof DOE.
這些制作誤差對衍射光學(xué)元件的衍射效率都有影響.
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The method to select phase coefficients for automatic design of Diffractive Optical Elements ( DOE ) is presented.
給出了混合光學(xué)系統(tǒng)自動設(shè)計時,確定衍射 光學(xué)元件 相位系數(shù)行之有效的方法.
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It is pointed out that linewidth error has very large effect of BOEs diffractive efficiency.
指出線寬誤差對二元光學(xué)元件衍射效率影響較大.
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Discussing diffractive efficiency of DOEThere are alignment errors , linewidth errors and etching errors infabrication of DOE.
衍射光學(xué)元件在制作過程中,存在掩模對準(zhǔn) 、 線寬和刻蝕深度等制作誤差.
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Far field optical measurement shows a high diffractive efficiency of the fabricated diffractive structure.
遠場光學(xué)測試顯示了所制衍射微透鏡的高衍射效能.
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Photolithographic patterning and thin film deposition were used for manufacturing multilevel diffractive optical element ( DOE ) .
應(yīng)用光刻和薄膜沉積技術(shù),制作了多級衍射 光學(xué)元件.
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The limitation of scalar method for diffractive grating is evaluated by comparison with rigorous coupled - wave analysis.
以衍射光柵為例,用標(biāo)量理論和嚴(yán)格耦合波理論的對比,分析衍射光學(xué)元件各參數(shù)對標(biāo)量理論適用范圍的影響.
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