首页> 外文会议>Eighth International Conference on Photorefractive Effects, Materials, and Devices, Jul 8-12, 2001, Delavan, Wisconsin >Permanent narrow-band reflection holograms in copper-doped lithium niobate channel waveguides for optical communications
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Permanent narrow-band reflection holograms in copper-doped lithium niobate channel waveguides for optical communications

机译:铜掺杂铌酸锂通道波导中的永久性窄带反射全息图,用于光通信

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Lithium niobate is a widely used substrate material for integrated optics because of its outstanding acustooptical, electrooptical, and photorefractive properties. Holographic reflection gratings in this material may be well suited for different applications, e.g., dense wavelength division multiplexing (DWDM) or narrow-band mirrors for integrated DBR waveguide lasers. We investigate such holographic wavelength filters in copper-doped lithium niobate channel waveguides. Permanent refractive-index gratings are generated by thermal fixing of holograms. The waveguides are fabricated by successive indiffusion of titanium stripes and thin layers of copper. After high temperature recording with green light, refractive-index changes exceeding Δn = 8Xl0~(-5) for infrared light (1550 nm) appear without the need of an additional development process. We believe that these strong refractive-index modulations most likely do not originate from the photorefractive effect but from material changes. The gratings are stable in the dark for at least one year without degradation, and no compensation mechanism via dark conductivity is observed.
机译:铌酸锂由于其出色的声光,电光和光折变特性而被广泛用作集成光学的基底材料。这种材料中的全息反射光栅可能非常适合不同的应用,例如,密集波分复用(DWDM)或集成DBR波导激光器的窄带镜。我们研究了掺铜铌酸锂通道波导中的此类全息波长滤光片。永久折射率光栅是通过全息图的热定影产生的。通过连续地扩散钛条和铜薄层来制造波导。在用绿光高温记录之后,对于红外光(1550 nm)的折射率变化超过Δn= 8X10〜(-5),而无需其他显影过程。我们认为,这些强折射率调制很可能并非来自光折射效应,而是来自材料变化。光栅在黑暗中稳定至少一年且没有退化,并且未观察到通过黑暗电导率的补偿机制。

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