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Mode gaps in the refractive index properties of low-dose ion-implanted LiNbO3 waveguides

机译:低剂量离子注入LiNbO3波导的折射率特性中的模态间隙

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摘要

Data are presented for the refractive index profiles for low-dose He+ ion-implanted LiNbO3 waveguides. In the nuclear stopping region, the extraordinary index is increased for low ion doses, by contrast with index reduction normally associated with ion-implanted waveguiding structures. The index increase was confirmed by fabricating a buried waveguide for the extraordinary index by use of multi-energy implants. For single-energy implants, data are shown which map the extraordinary index at the surface together with that in the nuclear collision zone, as a function of angle relative to the z axis of light propagation in surface waveguides for X and Y cut LiNbO3. These indices cross over near 45°, which results in a mode gap for which waveguide modes are not supported. A mechanism for this behavior is discussed based on defect-induced lattice relaxation. The phenomenon of a controlled mode gap may have applicability for optoelectronic and nonlinear materials and devices. © 2000 American Institute of Physics.
机译:给出了低剂量He +离子注入的LiNbO3波导的折射率分布的数据。与通常与离子注入波导结构相关的折射率降低相反,在核停止区,低离子剂量的非凡折射率会增加。通过使用多能量植入物制造具有超常折射率的埋入式波导,可以确认折射率的增加。对于单能植入物,显示了数据,这些数据映射了X和Y切割LiNbO3在表面波导中的异常指数以及在核碰撞区中的异常指数,它是相对于表面波导中光传播z轴的角度的函数。这些折射率在接近45°时相交,从而导致不支持波导模式的模式间隙。基于缺陷引起的晶格弛豫讨论了这种行为的机制。受控模式间隙的现象可能对光电和非线性材料及器件具有适用性。 ©2000美国物理研究所。

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