首页> 外文会议>Conference on integrated optics: Devices, materials, and technologies XIII; 20090126-28; San Jose, CA(US) >As_2S_3/Sr(Ti_(0.7)Co_(0.3))O_3 and As_2S_3/Sr(Ti_(0.6)Fe_(0.4))O_3 strip-loaded waveguides for integrated magneto-optical isolator applications
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As_2S_3/Sr(Ti_(0.7)Co_(0.3))O_3 and As_2S_3/Sr(Ti_(0.6)Fe_(0.4))O_3 strip-loaded waveguides for integrated magneto-optical isolator applications

机译:用于集成磁光隔离器应用的As_2S_3 / Sr(Ti_(0.7)Co_(0.3))O_3和As_2S_3 / Sr(Ti_(0.6)Fe_(0.4))O_3带载波导

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摘要

Sr(Ti_(0.6)Fe_(0.4))O_3 (STF) and Sr(Ti_(0.7)Co_(0.3))O_3 (STC) room-temperature ferromagnetic oxides were grown epitaxially on LaAlO_3(001), (LaSr)(AlTa)O_3 (001) and Si (001) substrates. Both materials were demonstrated to be magneto-optically active, and more optically transparent at 1550nm wavelength compared with other non-garnet ferromagnetic materials. As_2S_3/STF and As_2S_3/STC strip-loaded waveguides were fabricated on epitaxial STF or STC films grown on LSAT (001) substrates using thermal evaporation and lift-off processing. The absorption of STF at 1550 nm was measured by ellipsometry and by optical transmission spectrum measurements of the As_2S_3/STF waveguides, which gave similar results. A novel design for a Non-Reciprocal Phase Shift (NRPS) strip-loaded waveguide using chalcogenide glass (ChG) as the guiding layer is proposed. The NRPS and figure of merit of these waveguides are simulated. The ChG strip-loaded waveguide structure shows advantages both in fabrication and device performance according to the simulation results. Our study suggests the possibility of magneto-optical magneto-optical isolators monolithically integrated on a silicon platform.
机译:Sr(Ti_(0.6)Fe_(0.4))O_3(STF)和Sr(Ti_(0.7)Co_(0.3))O_3(STC)室温铁磁氧化物在LaAlO_3(001),(LaSr)(AlTa O_3(001)和Si(001)衬底。与其他非石榴石铁磁材料相比,这两种材料均被证明具有磁光活性,并且在1550nm波长处具有更高的光学透明性。使用热蒸发和剥离工艺,在LSAT(001)衬底上生长的外延STF或STC膜上制造了As_2S_3 / STF和As_2S_3 / STC带状波导。通过椭圆光度法和通过As_2S_3 / STF波导的光透射光谱测量来测量STF在1550 nm处的吸收,得出相似的结果。提出了一种新的设计,以硫族化物玻璃(ChG)为导向层,实现了不可逆相移(NRPS)带载波导。模拟了这些波导的NRPS和品质因数。根据仿真结果,ChG带状加载波导结构在制造和器件性能方面均显示出优势。我们的研究表明,磁光隔离器单片集成在硅平台上的可能性。

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