Anuszkiewicz A, Martynkien T, Mergo P, Makara M, Urbanczyk W
Institute of Physics, Wroclaw University of Technology, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland.
Opt Express. 2013 May 20;21(10):12657-67. doi: 10.1364/OE.21.012657.
We report on sensing and transmission characteristics of rocking filters fabricated in a silica side-hole fiber with group birefringence changing its sign at certain wavelength (λ(G = 0)), which corresponds to parabolic-like spectral dependence of beat length. Unusual birefringence dispersion of the side-hole fiber is induced by an elliptical germanium doped core located in a narrow glass bridge between two holes. Rocking filters fabricated in such a fiber have two resonances of the same order located on both sides of λ(G = 0). The sensitivity of both resonances has an opposite sign, which makes it possible to double the response of the rocking filter by applying the differential interrogation scheme. We demonstrate that in this way a pressure sensitivity of the rocking filter can be enlarged to 132 nm/MPa. We also show that by fabricating the rocking filter with a period close to maximum beat length a coupling between polarization modes can be obtained in a broad band reaching 240 nm.
我们报道了在具有群双折射在特定波长(λ(G = 0))处改变符号的石英侧孔光纤中制造的摇摆滤波器的传感和传输特性,该波长对应于拍长的抛物线状光谱依赖性。侧孔光纤的异常双折射色散是由位于两个孔之间狭窄玻璃桥中的椭圆形掺锗纤芯引起的。在这种光纤中制造的摇摆滤波器在λ(G = 0)两侧具有两个相同阶次的共振。两个共振的灵敏度具有相反的符号,这使得通过应用差分询问方案可以使摇摆滤波器的响应加倍。我们证明,通过这种方式,摇摆滤波器的压力灵敏度可以提高到132 nm/MPa。我们还表明,通过制造周期接近最大拍长的摇摆滤波器,可以在高达240 nm的宽带中获得偏振模式之间的耦合。