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Advanced materials and device technology for photonic electric field sensors

机译:光子电场传感器的先进材料和设备技术

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Photonic methods for electric field sensing have been demonstrated across the electromagnetic spectrum from near-DC to millimeter waves, and at field strengths from microvolts-per-meter to megavolts-per-meter. The advantages of the photonic approach include a high degree of electrical isolation, wide bandwidth, minimum perturbation of the incident field, and the ability to operate in harsh environments. p /pAerospace applications of this technology span a wide range of frequencies and field strengths. They include, at the high-frequency/high-field end, measurement of high-power electromagnetic pulses, and at the low-frequency/low-field end, in-flight monitoring of electrophysiological signals. The demands of these applications continue to spur the development of novel materials and device structures to achieve increased sensitivity, wider bandwidth, and greater high-field measurement capability. p /pThis paper will discuss several new directions in photonic electric field sensing technology for defense applications. The first is the use of crystal ion slicing to prepare high-quality, single-crystal electro-optic thin films on low-dielectricconstant, RF-friendly substrates. The second is the use of two-dimensional photonic crystal structures to enhance the electro-optic response through slow-light propagation effects. The third is the use of ferroelectric relaxor materials with extremely high electro-optic coefficients.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:在从近DC到毫米波的电磁频谱上,以及在从每米微伏到每米兆伏的场强范围内,已经证明了用于电场感应的光子方法。光子方法的优点包括高度的电隔离,宽带宽,最小的入射场扰动以及在恶劣环境下运行的能力。

这项技术在航空领域的应用涵盖了广泛的频率和场强。它们包括在高频/高场端测量大功率电磁脉冲,并在低频/低场端进行飞行中的电生理信号监测。这些应用的需求继续刺激新型材料和器件结构的开发,以实现更高的灵敏度,更宽的带宽和更高的高场测量能力。

本文将讨论用于国防应用的光子电场传感技术的几个新方向。首先是使用晶体离子切片技术在低介电常数且对射频友好的基板上制备高质量的单晶电光薄膜。第二个是使用二维光子晶体结构通过慢光传播效应来增强电光响应。第三是使用具有极高电光系数的铁电弛豫材料。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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