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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Determination of the amplitude and the phase of the elements of electric cross-spectral density matrix by spectral measurements
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Determination of the amplitude and the phase of the elements of electric cross-spectral density matrix by spectral measurements

机译:通过光谱测量确定电子交叉光谱密度矩阵元素的幅度和相位

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The amplitudes and the phases of the elements of electric cross-spectral density matrix are determined experimentally for a pair of points in the cross-section of an expanded laser beam. A modified version of the Young's interferometer is used as an experimental tool, which separates the beams emerging from the double-slit widely and provides ease in insertion of polarizers and half wave rotators in individual beams. To determine these complex elements of the cross-spectral density matrix, the experimentally obtained values of the spectral densities at an off-axis point are put in the mathematical expressions derived by us using the spectral interference law. The four complex generalized Stokes parameters are also determined using the linear combinations of the matrix elements. This unique but simple experimental approach for determining both the two-point parameters might provide a means to investigate the polarization and the coherence properties of the random electromagnetic beams on propagation.
机译:对于扩展的激光束的横截面中的一对点,实验确定了电子交叉谱密度矩阵的元素的幅度和相位。杨氏干涉仪的改良版用作实验工具,它可以将双缝中出现的光束分开很宽,并易于将偏振器和半波旋转器插入单个光束中。为了确定交叉光谱密度矩阵的这些复杂元素,将通过实验获得的离轴点处的光谱密度值放入由我们使用光谱干扰定律得出的数学表达式中。还使用矩阵元素的线性组合来确定四个复杂的广义Stokes参数。这种确定两点参数的独特但简单的实验方法可能会提供一种研究随机电磁束在传​​播时的极化和相干特性的方法。

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