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Optical sensing of magnetic field based on magnetorefractiveeffect in manganites

机译:基于锰矿石磁场射频的磁场光学传感

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We have investigated the transverse magneto-optical Kerr effect (TMOKE) in thin films of ferromagnetic man-ganites (La2/3Sri /3Mn03, La2/3Cal /3Mn03) with visible light. In addition to the standard transverse MO Kerreffect - which is proportional to the magnetization component perpendicular to the plane of light incidence - wehave observed a strong even contribution roughly proportional to the absolute value of applied magnetic field.It is well observed near the Curie temperature. This contribution is not the ordinary quadratic magneto-opticaleffect it but is related to the magnetorefractive effect (MRE) - the optical equivalent of magnetoresistance -which give rise a significant change of reflectivity with the applied magnetic field. This magnetorefractive ef-fect can exceed more than ten times the linear magneto-optical effect (MOE). This finding is against commonassumption that MRE is negligible in the visible spectral range and therefore both MRE and MOE should beconsidered. Detailed analysis of measurements in various magneto-optical configurations is provided and themethod of separation of both contributions is shown. Finally we envisage the possibility to exploit this effectin remote optical magnetic field sensor, which can be useful for nondestructive, noninvasive, and local magneticfield sensing.
机译:我们已经研究了具有可见光的铁磁性人 - 甘油岩(La2 / 3SRI / 3Mn03,La2 / 3mn03)的薄膜中的横向磁光kerr效应(tmoke)。除了标准的横向莫kerreffect之外 - 与垂直于光入射平面的磁化分量成比例 - Wehave观察到与施加磁场的绝对值大致成比例的强烈甚至贡献。在居里温度附近观察到很好。该贡献不是普通的二次磁光效应,但与磁阻效果(MRE)相关 - 磁阻的光学当量 - 与所施加的磁场产生反射率的显着变化。该磁热效率可以超过线性磁光效应(MOE)的十倍以上。这种发现是针对公共的,即在可见光谱范围内,MRE可以忽略不计,因此应该被剥夺MRE和MOE。提供了各种磁光学配置中测量的详细分析,并示出了两种贡献的分离的过分水解。最后,我们设想利用这种影响的可能性远程光学磁场传感器,这对于非破坏性,非侵入性和局部磁场感测是有用的。

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