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Theoretical and experimental investigations of metal sulfide dielectric coatings for hollow waveguides

机译:中空波导金属硫化物介电涂层的理论和实验研究

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摘要

Continuous efforts to develop low-loss flexible waveguides, to transmit mid-IR laser energy for minimally invasive surgical and diagnostic procedures, have been carried out by us and other groups. We have introduced sulfide dielectric films coated over an Ag reflecting layer as another potential solution. The metal sulfides used have high transparency in the IR spectrum, and their thickness can be tailored to minimize the attenuation over a selected wavelength range. The high refractive index contrast of the two metal sulfide materials enables us to produce multilayer hollow waveguides. These waveguide will have low attenuation in both straight and bent conditions, low sensitivity to coupling and to surface roughness, and a broad wavelength range. The lowest loss for a straight guide, measured at 1.55μm for a 1,000-μm-bore Ag/CdS/PbS/CdS hollow glass waveguide (HGW), was 0.06 dB/m. This loss is three times less than that measured for a single-layer Ag/CdS-coated HGW at 1.55 μm. A theoretical simulation applying the same conditions showed the same pattern with a good potential for improvement.
机译:我们和其他组织一直在不断努力开发低损耗的柔性波导,以传输中红外激光能量,以实现微创的外科手术和诊断程序。我们已经介绍了在Ag反射层上涂覆的硫化物介电膜,作为另一种可能的解决方案。所使用的金属硫化物在红外光谱中具有很高的透明度,可以调整其厚度以使在选定波长范围内的衰减最小。两种金属硫化物材料的高折射率对比使我们能够生产多层中空波导。这些波导在直线和弯曲条件下都将具有较低的衰减,对耦合和表面粗糙度的灵敏度较低,并具有较宽的波长范围。对于1000微米孔径的Ag / CdS / PbS / CdS中空玻璃波导(HGW),测得的直线波导的最低损耗为1.55μm,为0.06 dB / m。该损耗比单层Ag / CdS涂层的HGW在1.55μm下测得的损耗小三倍。应用相同条件的理论模拟显示出相同的模式,具有改进的潜力。

著录项

  • 来源
    《Optical engineering 》 |2008年第4期| 045008.1-045008.7| 共7页
  • 作者单位

    Tel Aviv University Bio-Engineering Department Tel Aviv, Israel;

    Tel Aviv University Bio-Engineering Department Tel Aviv, Israel;

    Rutgers, The State University of New Jersey Department of Materials Science and Engineering Piscataway, New Jersey 08845;

    Mary Institute and Saint Louis Country Day School US Math Department St. Louis, Missouri 63124;

    Tel Aviv University Bio-Engineering Department Tel Aviv, Israel George Washington University School of Engineering Electrical and Computer Engineering Department Washington, DC 20052;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hollow waveguides; photonic crystals;

    机译:空心波导光子晶体;

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