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首页> 外文期刊>Journal of Lightwave Technology >Permanent magnet-based guided-wave magnetooptic Bragg cell modules
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Permanent magnet-based guided-wave magnetooptic Bragg cell modules

机译:基于永磁体的导波磁光布拉格单元模块

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Compact magnetostatic forward volume wave-based guided-wave magnetooptic (MO) Bragg cell modules have been realized by utilizing a pair of small samarium-cobalt permanent magnets together with a pair of current-carrying coils. A highly uniform DC magnetic field, has been obtained in the air gap where yttrium iron garnet-gadolinium gallium garnet (YIG-GdGG) waveguide samples are inserted. A tunable DC magnetic field as large as 2446 Oe corresponding to a tunable carrier frequency band of 6.85 GHz has been achieved. The resulting MO Bragg cell modules, at the optical wavelength of 1.303 mu m, with carrier frequencies ranging from 2.0 to 12.0 GHz have provided performance characteristics comparable to those obtained by using a bulk electromagnet. Compact MO Bragg cell modules have potential applications, such as scanning, switching of light beams, and real-time processing of wide-band microwave signals without requiring frequency down-conversion.
机译:紧凑型静磁正向体积波基导波磁光(MO)布拉格单元模块已经通过利用一对小型sa钴永磁体和一对载流线圈来实现。在插入了钇铁石榴石-gall镓镓石榴石(YIG-GdGG)波导样品的气隙中获得了高度均匀的DC磁场。已实现了一个大的2446 Oe可调直流磁场,它对应于6.85 GHz的可调载波频带。所得到的MO Bragg电池模块的光波长为1.303μm,载波频率为2.0至12.0 GHz,其性能特征可与使用体电磁铁获得的性能相媲美。紧凑型MO Bragg电池模块具有潜在的应用,例如扫描,光束切换和宽带微波信号的实时处理,而无需下变频。

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