Publication | Closed Access
Miniaturized fiber in-line Mach–Zehnder interferometer based on inner air cavity for high-temperature sensing
85
Citations
15
References
2012
Year
PhotonicsHigh-temperature SensingOptical MaterialsEngineeringOptical PropertiesFiber-optic CommunicationInterferometryRefractive Index ChangeFiber Optic SensingFiber OpticsInstrumentationThermal SensorMicro-optical ComponentInner Air CavityOptical SensorOptical SensorsFemtosecond Laser MicromachiningFiber Optic
We demonstrate a miniaturized fiber in-line Mach-Zehnder interferometer based on an inner air cavity adjacent to the fiber core for high-temperature sensing. The inner air cavity is fabricated by femtosecond laser micromachining and the fusion splicing technique. Such a device is robust and insensitive to ambient refractive index change, and has high temperature sensitivity of ∼43.2 pm/°C, up to 1000°C, and low cross sensitivity to strain.
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