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Electrical reflection coefficient and velocity shift for groove gratings

机译:沟槽光栅的电反射系数和速度偏移

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The electrical reflection coefficient r/sub e/ and velocity shift ( Delta nu / nu )/sub e/ for grooves has never been formulated. All previous calculations for r/sub e/ and ( Delta nu / nu )/sub e/ have used formulas valid for the reflection of a surface acoustic wave (SAW) from an array of conducting strips. However, the discontinuity in electrical boundary conditions leading to these formulas does not exist in groove gratings. A new expression for the electrical reflection coefficient and velocity shift for some material overlays is derived from both the variational principle and perturbation theory. The results for various substrates are compared to show the agreement between the two approaches. The implications of this new formulation for the design of grooved arrays on various materials are discussed, effectively resolving the discrepancy between theory and experiment.
机译:从未制定用于沟槽的电反射系数r / sub e /和速度偏移(Delta nu / nu)/ sub e /。 r / sub e /和(Delta nu / nu)/ sub e /的所有先前计算都使用了对从导电带阵列反射表面声波(SAW)有效的公式。但是,在沟槽光栅中不存在导致这些公式的电边界条件的不连续性。从变分原理和微扰理论出发,得出了一些材料覆盖层的电反射系数和速度位移的新表达式。比较了各种基材的结果,以显示两种方法之间的一致性。讨论了这种新配方对在各种材料上设计沟槽阵列的意义,有效地解决了理论与实验之间的差异。

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