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All-Dielectric Electrooptic Sensor Based on a Polymer Microresonator Coupled Side-Polished Optical Fiber

机译:基于聚合物微谐振器耦合侧抛光光纤的全介电电光传感器

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A novel electrooptic (EO) electric field (E-field) sensor based on side-polished fiber coupled with an EO polymer microring resonator is proposed and demonstrated. An EO polymer waveguide with a ring shape is fabricated on the polished flat of an optical fiber. Light in the fiber evanescently couples into the resonator and forms resonant modes for certain wavelengths and produces notches in the output intensity of the fiber. External electric fields change the index of refraction of the ring waveguide and therefore dither its resonant wavelengths. For light of wavelength on the slope of a resonance notch, a change in the output intensity can be detected. The sensor is all dielectric without metal layers to distort the measured E-field. The resonant structure allows the sensor to potentially have much higher sensitivity than other electrooptic sensors based on Mach-Zehnder or polarization modulation. Since electrooptic polymers have higher electrooptic coefficients, lower dielectric constants and faster electrooptic responses than inorganic crystals, higher sensitivity, lower invasiveness, and higher bandwidth of E-field sensing can be expected. This sensor eliminates unreliable fiber-to-waveguide butt coupling as well as the high propagation loss encountered in the long straight EO polymer waveguides of sensors based on Mach-Zehnder structures. By using the fiber itself as the supporting substrate of the ring waveguide, the sensor can have small size and low disturbance to the measured electric field. The concept is demonstrated using AJLS103 EO polymer. A sensitivity of 100 mV/m has been achieved at frequencies up to 550 MHz (limited by the measurement system)
机译:提出并证明了一种基于侧抛光光纤与EO聚合物微环谐振器耦合的新型电光(EO)电场(E-field)传感器。具有环形形状的EO聚合物波导被制造在光纤的抛光平面上。光纤中的光e逝地耦合到谐振器中,并在某些波长下形成谐振模式,并在光纤的输出强度中产生缺口。外部电场会改变环形波导的折射率,因此会改变其谐振波长。对于波长在谐振凹口的斜率上的光,可以检测到输出强度的变化。传感器全部为电介质,没有金属层,不会使测得的电场失真。谐振结构使传感器具有比其他基于Mach-Zehnder或偏振调制的电光传感器更高的灵敏度。由于电光聚合物比无机晶体具有更高的电光系数,更低的介电常数和更快的电光响应,因此可以期望更高的灵敏度,更低的侵入性和更高的电场感测带宽。该传感器消除了不可靠的光纤到波导的对接耦合,以及消除了基于Mach-Zehnder结构的传感器的长直线EO聚合物波导中遇到的高传播损耗。通过使用光纤本身作为环形波导的支撑基板,传感器可以具有较小的尺寸和对测得电场的低干扰。使用AJLS103 EO聚合物对此概念进行了演示。在高达550 MHz的频率上已达到100 mV / m的灵敏度(受测量系统限制)

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