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Novel micromachined fiber-optic E-field sensor

机译:新型微加工光纤电场传感器

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Due to ever increasing requirements and complexity of electrical circuits the necessity of developing precise and reliable sensors to measure internal electric field distributions steadily increases. One key issue for such sensors is noninvasiveness. Hence, our approach to meet this goal is to develop a hybrid fiber optic field sensor with high spatial resolution. This concept takes advantage of the fact, that optical fibers do not interfere with the electromagnetic field to be measured, but are capable of transmitting optical information. This minimizes distortion of the E-field. Furthermore, such sensors are suitable for a variety of measurements, e.g. the determination of field distributions in printed circuits and field patterns of antennas, or for hyperthermia measurements. The absence of any metallic parts minimizes field distortion by the sensor, and the use of a surface oriented semiconductor with dimensions determined only by the optical fiber allows one of the smallest sensors to our knowledge to be realized.
机译:由于越来越多的需求和电路复杂性,需要开发精确和可靠的传感器以稳定地增加内部电场分布的必要性。这种传感器的一个关键问题是非投资性。因此,我们实现这一目标的方法是开发具有高空间分辨率的混合光纤场传感器。该概念利用该事实,光纤不会干扰要测量的电磁场,而是能够传输光学信息。这最大限度地减少了电子字段的失真。此外,这种传感器适用于各种测量值,例如,确定天线的印刷电路和场模式的现场分布,或用于热疗测量。没有任何金属部件的情况最小化传感器的场失真,并且使用具有仅由光纤确定的尺寸的表面取向半导体允许最小的传感器成为我们的知识。

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