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Principle of control of current of electro transmission line on basis of non-Faraday rotation of polarization vector of a photon echo

机译:基于光子回波偏振向量的非法旋转旋转电流电​​流电流原理

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Given work is devoted to investigation of effect of non-Faraday rotation of polarization vector of a photon echo at influence of a constant magnetic field on the resonant environment (molecular iodine vapors) in a longitudinal direction1-4. Magnetic field was created by the solenoid. The time interval between excite pulses accepts one of the fixed values. Experimental devices for detection of non-Faraday rotation of polarization vector of photon echo are developed and experimental dependences of an angle of this rotation from the value of magnetic field intensity and electric current are received. The method on the basis of a photon echo of intensity registration of magnetic field and electric current is developed. Accuracy of magnetic field parameters registration on the basis of the offered method of measurement is determined. Recommendations to use this method for the control of current of electro transmission line are produced.
机译:给定的工作致力于研究光子回波偏振载体对纵向方向上谐振环境(分子碘蒸汽)对谐振环境(分子碘蒸汽)的影响的偏振载体的非法偏振旋转的影响。磁场由螺线管产生。激发脉冲之间的时间间隔接受一个固定值。显影用于检测光子回波偏振矢量的非法拉第旋转的实验装置,并且接收到从磁场强度和电流的值的这种旋转角度的实验依赖性。开发了基于磁场和电流强度配准的光子回波的方法。确定了磁场参数的准确性,基于提供的测量方法进行登记。生产用于控制电流电流电流的这种方法的建议。

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