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Liquid Crystal Waveguides: New Devices Enabled by >1000 Waves of Optical Phase Control

机译:液晶波导:超过1000个光相位控制波支持的新设备

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A new electro-optic waveguide platform, which provides unprecedented voltage control over optical phase delays (> 2mm), with very low loss (< 0.5 dB/cm) and rapid response time (sub millisecond), will be presented. This technology, developed by Vescent Photonics, is based upon a unique liquid-crystal waveguide geometry, which exploits the tremendous electro-optic response of liquid crystals while circumventing their historic limitations. The waveguide geometry provides nematic relaxation speeds in the 10's of microseconds and LC scattering losses that are reduced by orders of magnitude from bulk transmissive LC optics. The exceedingly large optical phase delays accessible with this technology enable the design and construction of a new class of previously unrealizable photonic devices. Examples include: 2-D analog non-mechanical beamsteerers, chip-scale widely tunable lasers, chip-scale Fourier transform spectrometer (< 5 nm resolution demonstrated), widely tunable micro-ring resonators, tunable lenses, ultra-low power (< 5 micro Watts) optical switches, true optical time delay devices for phased array antennas, and many more. All of these devices may benefit from established manufacturing technologies and ultimately may be as inexpensive as a calculator display. Furthermore, this new integrated photonic architecture has applications in a wide array of commercial and defense markets including: remote sensing, micro-LADAR, OCT, FSO, laser illumination, phased array radar, etc. Performance attributes of several example devices and application data will be presented. In particular, we will present a non-mechanical beamsteerer that steers light in both the horizontal and vertical dimensions.
机译:将介绍一种新的电光波导平台,该平台可对光相位延迟(> 2mm)提供空前的电压控制,损耗极低(<0.5 dB / cm),响应时间短(亚毫秒)。 Vescent Photonics开发的这项技术基于独特的液晶波导几何形状,该技术在克服液晶显示器历史性局限性的同时,充分利用了液晶的巨大电光响应。波导的几何形状提供了10微秒的向列弛豫速度,并且LC散射损耗从整体透射LC光学器件减少了数量级。借助该技术可实现的极大的光学相位延迟使得能够设计和构造新型的以前无法实现的光子器件。示例包括:二维模拟非机械光束转向器,芯片级可广泛调谐的激光器,芯片级傅里叶变换光谱仪(已证明<5 nm分辨率),可广泛调谐的微环谐振器,可调谐透镜,超低功率(<5 (微瓦)光开关,用于相控阵天线的真正的光时延设备等等。所有这些设备都可以从成熟的制造技术中受益,并且最终可能与计算器显示器一样便宜。此外,这种新的集成光子架构可在广泛的商业和国防市场中应用,包括:遥感,微型LADAR,OCT,FSO,激光照明,相控阵雷达等。一些示例设备的性能属性和应用数据将被提出。特别是,我们将介绍一种非机械式光束转向器,它可以同时控制水平和垂直方向的光线。

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