首页> 外文OA文献 >Thermal tuning of surface plasmon resonance : Ag gratings on barium strontium titanate thin films
【2h】

Thermal tuning of surface plasmon resonance : Ag gratings on barium strontium titanate thin films

机译:表面等离子体激元共振的热调谐:钛酸锶钡薄膜上的银光栅

摘要

Surface plasmon tuning via thermally induced refractive index changes in ferroelectrics is investigated. Epitaxial (Ba 0.7Sr 0.3)TiO 3 (BST) thin films were deposited on MgO (001) substrates by pulsed laser deposition. The refractive index of BST thin films measured by the prism-coupling technique was found to increase from 2.3932 (TE)/1.9945 (TM) at room temperature to 2.3949 (TE)/1.9965 (TM) at 66°C. Then 30-nm-Ag gratings with periodicity 750 nm and width 300 nm were fabricated on BST by soft ultraviolet nanoimprint lithography and subsequent lift-off process. The reflection spectra from 500 to 1000 nm with incident angle from 5° to 60° were measured at room temperature and 66°C, with a collimated and p-polarized light incident perpendicularly to the grating direction. Several modes were observed from the spectra. At 66°C, a red shift of a dip at about 850 nm by 2 nm was obtained at an incident angle of 15°. Calculations confirmed that the observed modes belong to the (-1), (2), (-2) and (3) surface plasmon modes from the Ag and BST interfaces and localized mode; the red shift by thermal tuning is also confirmed. The results indicate the feasibility of active modulation in surface plasmon resonance in solid-state structures.
机译:研究了通过电介质中热诱导的折射率变化进行的表面等离子体激元调谐。外延(Ba 0.7Sr 0.3)TiO 3(BST)薄膜通过脉冲激光沉积法沉积在MgO(001)衬底上。发现通过棱镜耦合技术测量的BST薄膜的折射率从室温下的2.3932(TE)/1.9945(TM)增加到66℃下的2.3949(TE)/1.9965(TM)。然后通过软紫外纳米压印光刻和随后的剥离工艺,在BST上制备了周期为750 nm,宽度为300 nm的30 nm Ag光栅。在室温和66°C下,以垂直于光栅方向入射的准直和p偏振光测量500至1000 nm的反射光谱,入射角为5°至60°。从光谱观察到几种模式。在66℃下,在15°的入射角处获得约850nm×2nm的倾角的红移。计算证实,从Ag和BST界面以及局部模式观察到的模式属于(-1),(2),(-2)和(3)表面等离振子模式。还确认了通过热调谐的红移。结果表明在固态结构的表面等离振子共振中进行主动调制的可行性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号