Machida H, Matsuura Y, Ishikawa H, Miyagi M
Appl Opt. 1992 Dec 20;31(36):7617-22. doi: 10.1364/AO.31.007617.
Transmission losses of two types of dielectric-coated rectangular waveguide are analyzed theoretically to transmit linearly or circularly polarized CO(2) laser light. When ZnS and PbTe are chosen as coating materials, waveguide losses are reduced by ~ 1 order of magnitude by increasing each pair of coating materials. Phosphor bronze rectangular waveguides with small aspect ratios and various cross sections, whose inner walls are coated with a single PbF(2) layer, are fabricated by using vacuum-evaporation and assembly techniques. Transmission losses of straight and bent waveguides are measured for coherent CO(2) laser light as well as for incoherent infrared lights. Straight waveguide losses of 0.1 dB/m including a coupling loss from a laser, are obtained at a 10.6-microm wavelength for 1-m-long and small-core waveguides.
理论上分析了两种介质涂层矩形波导的传输损耗,以传输线偏振或圆偏振的CO₂激光。当选择ZnS和PbTe作为涂层材料时,通过增加每对涂层材料,波导损耗降低了约1个数量级。通过使用真空蒸发和组装技术,制造了具有小纵横比和各种横截面的磷青铜矩形波导,其内壁涂有单层PbF₂。测量了直波导和弯曲波导对于相干CO₂激光以及非相干红外光的传输损耗。对于1米长的小芯波导,在10.6微米波长处获得了包括来自激光器的耦合损耗在内的0.1 dB/m的直波导损耗。