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Dual purpose input electrode structure for multi-function integrated optics chips (MIOCs)

机译:多功能集成光学芯片(MIOC)的双用途输入电极结构

摘要

An Integrated Optics Chip with improved performance when exposed to rapidly changing temperature is disclosed. The optic chip or integrated optic chip or MIOC has a top surface, a +Z face and -Z face. The chip is formed from a crystal having a high electro-optic coefficient such as Lithium Niobate. For the purpose of orienting the components to the optic chip to be described, the +Z crystal axis extends outward from the +Z face. An input waveguide formed in the top surface of the chip and orthogonal to the +Z axis receives an optical signal from an input port, passes the signal via a waveguide network, to an output waveguide coupling the waveguide network to an output port. Metalization is applied to the top face of the optic chip to form at least a first and a second rail. The first and second rails are positioned to very closely straddle a portion of the input waveguide. A conductive bridge connects the first and second rails to prevent a charge differential from developing between the first and second rails.
机译:公开了一种在暴露于快速变化的温度时具有改善的性能的集成光学芯片。光学芯片或集成光学芯片或MIOC具有顶表面,+ Z面和-Z面。该芯片由具有高电光系数的晶体例如铌酸锂形成。为了将组件定向到待描述的光学芯片,+ Z晶轴从+ Z面向外延伸。形成在芯片顶表面中且与+ Z轴正交的输入波导从输入端口接收光信号,将信号通过波导网络传递到将波导网络耦合到输出端口的输出波导。金属化被施加到光学芯片的顶面以形成至少第一和第二轨道。第一和第二轨道被定位成非常紧密地跨越输入波导的一部分。导电桥连接第一和第二轨道,以防止在第一和第二轨道之间产生电荷差。

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