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Fiberless multicolor optoelectrodes using Injection Laser Diodes and Gradient-index lens coupled optical waveguides

机译:使用注入激光二极管和梯度折射率透镜耦合的光波导的无色多色光电电极

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We present an integrated optoelectrode that can deliver multicolor light from a waveguide coupled to an optical mixer. Such a device can provide spatial precision and scalability needed to enable independent activation and silencing of local neural circuits, allowing study of brain activities such as memory consolidation networks in the hippocampus. We have demonstrated successful implementation of fiber-less optoelectrodes in a highly compact form by achieving efficient end-fire coupling between a side-emitting injection laser diode (ILD) and a dielectric channel waveguide via a Gradient-index (GRIN) lens. Total optical efficiency achieved for 405nm and 635nm wavelengths through an optical mixer was 12.2% and 5.4%, respectively. This approach also provides robust thermal packaging by efficiently managing thermal power loss of ILDs.
机译:我们提出了一种集成的光电电极,该光电电极可以从耦合到光学混频器的波导中传递多色光。这种设备可以提供实现独立激活和沉默局部神经回路所需的空间精度和可扩展性,从而可以研究大脑活动,例如海马中的记忆巩固网络。我们已经证明,通过在侧面发射注入激光二极管(ILD)和介电通道波导之间通过梯度折射率(GRIN)透镜实现有效的端射耦合,可以成功实现高度紧凑的无纤维光电电极。通过光学混合器在405nm和635nm波长处获得的总光学效率分别为12.2%和5.4%。这种方法还可以通过有效管理ILD的热功率损耗来提供强大的热包装。

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