Publication | Closed Access
Gas refractometry based on an all-fiber spatial optical filter
10
Citations
9
References
2012
Year
PhotonicsOptical MaterialsEngineeringGas RefractometryOptical Transmission SystemOptical PropertiesFiber-optic CommunicationOptical FibersFiber Optic SensingFiber OpticsOptical SystemsFiber OpticOptical SensorOptical SensorsSpatial Optical FilterOptical Fiber
A spatial optical filter based on splice misalignment between optical fibers with different diameters is proposed for gas refractometry. The sensing head is formed by a 2 mm long optical fiber with 50 μm diameter that is spliced with a strong misalignment between two single-mode fibers (SMF28) and interrogated in transmission. The misalignment causes a Fabry-Perot behavior along the reduced-size fiber and depending on the lead-out SMF28 position, it is possible to obtain different spectral responses, namely, bandpass or band-rejection filters. It is shown that the spatial filter device is highly sensitive to refractive index changes on a nitrogen environment by means of the gas pressure variation. A maximum sensitivity of -1390 nm/RIU for the bandpass filter was achieved. Both devices have shown similar temperature responses with an average sensitivity of 25.7 pm/°C.
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