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A study of nonlinear optical polymers for use in ultrafast electro-optic sampling measurements.

机译:对用于超快速电光采样测量的非线性光学聚合物的研究。

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摘要

Recently, electro-optic sampling (EOS), which utilizes a combination of ultrafast laser technology and the Pockels effect, has been refined into a fiber-based system that benefits from an enhanced positioning ability and measurement flexibility. EOS would still be improved further with an increase in field sensitivity and a decrease in capacitive loading (invasiveness) for near-field and integrated circuit measurements of ultrahigh bandwidth devices. Electro-optic polymers, with higher electro-optic coefficients and lower dielectric permittivities would address these two issues.; This dissertation focuses on a theoretical and experimental study of the potential viability of electro-optic polymers as Electro-Optic Sampling probe materials. Finite element method simulations of EOS probe materials were performed to study the effect of the material's dielectric permittivity on performance. These simulations found that the sensitivity of an EOS probe material increases while its invasiveness decreases as its dielectric permittivity is decreased. Simulations of polymer EOS probes suggest that they would be ideal. Numerical analysis of the polymer's index ellipsoid was completed in order to study a polymer probe's potential for cross-polarization suppression capability. These results showed that an electro-optic polymer could be capable of isolating tangential electric field components, but not normal field components.; A variety of electro-optic polymers were poled and tested as EOS field sensors. Poly(gamma-benzyl-L-glutamate) (PBLG) was poled using the Solution Evaporation Electric-field Poling method, producing a film with an electro-optic coefficient (r33) of 1.62 pm/V. This is believed to be the highest reported value for a poled PBLG film to date greater than that for PBLG poled by thermal poling techniques by a factor of over 30. A fiber-mounted polymer EOS electric field sensor was constructed and tested using a contact electric-field poled film of copoly(Disperse Red 1-Methyl Methacrylate). This was the first-ever fiber-mounted polymer EOS sensor, and the first external polymer EOS sensor to be used with its poling electrodes removed. The final experiment consisted of the testing of another fiber-mounted polymer EOS sensor using a 120-mum-thick polymer consisting of a novel guest/host system. This probe was tested by successfully performing EOS measurements on a silicon microstrip operating at frequencies up to 15 GHz.
机译:最近,结合了超快激光技术和Pockels效应的电光采样(EOS)已被提炼成基于光纤的系统,该系统受益于增强的定位能力和测量灵活性。对于超高带宽设备的近场和集成电路测量,随着场灵敏度的提高和电容负载(侵入性)的降低,EOS仍将得到进一步改善。具有较高电光系数和较低介电常数的电光聚合物将解决这两个问题。本论文主要针对电光聚合物作为电光采样探针材料的潜在可行性进行理论和实验研究。对EOS探针材料进行了有限元方法模拟,以研究材料的介电常数对性能的影响。这些模拟发现,EOS探针材料的灵敏度随介电常数的降低而增加,而其侵入性却降低。聚合物EOS探针的模拟表明它们是理想的。为了研究聚合物探针的交叉极化抑制能力,完成了聚合物折射率椭球的数值分析。这些结果表明,电光聚合物能够隔离切向电场分量,但不能隔离法向电场分量。各种电光聚合物经过极化处理并作为EOS场传感器进行了测试。使用溶液蒸发电场极化法将聚(γ-苄基-L-谷氨酸)(PBLG)极化,制备出电光系数(r33)为1.62 pm / V的薄膜。据信,这是迄今为止PBLG极化薄膜的最高报告值,比通过热极化技术极化的PBLG的最高报告值高出30倍以上。使用接触电技术构建并测试了安装在光纤上的聚合物EOS电场传感器共聚(分散红1-甲基丙烯酸甲酯)的场极化膜。这是有史以来第一个安装在纤维上的聚合物EOS传感器,也是第一个在去除极化电极后使用的外部聚合物EOS传感器。最终实验包括使用120微米厚的聚合物(由新型来宾/宿主系统组成)测试另一种安装在纤维上的聚合物EOS传感器。通过在频率高达15 GHz的硅微带上成功执行EOS测量来测试此探头。

著录项

  • 作者

    Deibel, Jason Allen.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Physics Optics.; Engineering Electronics and Electrical.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 211 p.
  • 总页数 211
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;无线电电子学、电信技术;工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:44:02

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