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离子切片铌酸锂薄膜中的光子晶体结构

Photonic crystal structures in ion-sliced lithium niobate thin films.

作者信息

Sulser Frederik, Poberaj Gorazd, Koechlin Manuel, Günter Peter

机构信息

Nonlinear Optics Laboratory, Institute of Quantum Electronics, ETH Zurich, 8093 Zurich, Switzerland.

出版信息

Opt Express. 2009 Oct 26;17(22):20291-300. doi: 10.1364/OE.17.020291.

Abstract

We report on the first realization of photonic crystal structures in 600-nm thick ion-sliced, single-crystalline lithium niobate thin films bonded on a lithium niobate substrate using adhesive polymer benzocyclobutene (BCB). Focused ion beam (FIB) milling is used for fast prototyping of photonic crystal structures with regular cylindrical holes. Unwanted redeposition effects leading to conically shaped holes in lithium niobate are minimized due to the soft BCB layer underneath. A high refractive index contrast of 0.65 between the lithium niobate thin film and the BCB underlayer enables strong light confinement in the vertical direction. For TE polarized light a triangular photonic crystal lattice of air holes with a diameter of 240 nm and a separation of 500 nm has a photonic bandgap in the wavelength range from 1390 to 1500 nm. Experimentally measured transmission spectra show a spectral power dip for the GK direction of the reci ocal lattice with an extinction ratio of up to 15 dB. This is in good agreement with numerical simulations based on the three-dimensional plane wave expansion (PWE) and the finite-difference time-domain (FDTD) method.

摘要

我们报道了首次在使用粘性聚合物苯并环丁烯(BCB)粘结在铌酸锂衬底上的600纳米厚离子切片单晶铌酸锂薄膜中实现光子晶体结构。聚焦离子束(FIB)铣削用于具有规则圆柱孔的光子晶体结构的快速原型制作。由于下方的软BCB层,导致铌酸锂中出现锥形孔的不必要再沉积效应被最小化。铌酸锂薄膜与BCB底层之间0.65的高折射率对比度使得在垂直方向上能够实现强光限制。对于TE偏振光,直径为240纳米、间距为500纳米的三角形气孔光子晶体晶格在1390至1500纳米波长范围内具有光子带隙。实验测量的透射光谱显示,倒易晶格GK方向的光谱功率出现下降,消光比高达15分贝。这与基于三维平面波展开(PWE)和时域有限差分(FDTD)方法的数值模拟结果非常吻合。

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