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Geometric phase and Pancharatnam phase induced by light wave polarization

机译:光波偏振诱导的几何相和Pancharatnam相

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摘要

We use the quantum kinematic approach to revisit geometric phases associated with polarizing processes of a monochromatic light wave. We give the expressions of geometric phases for any, unitary or non-unitary, cyclic or non-cyclic transformations of the light wave state. Contrarily to the usually considered case of absorbing polarizers, we found that a light wave passing through a polarizer may acquire in general a nonzero geometric phase. This geometric phase exists despite the fact that initial and final polarization states are in phase according to the Pancharatnam criterion and cannot be measured using interferometric superposition. Consequently, there is a difference between the Pancharatnam phase and the complete geometric phase acquired by a light wave passing through a polarizer. We illustrate our work with the particular example of total reflection based polarizers.
机译:我们使用量子运动学方法来重新研究与单色光波的偏振过程相关的几何相位。我们给出了光波状态的任何,单或非单,循环或非循环变换的几何相位表达式。与通常考虑的吸收偏振器的情况相反,我们发现通过偏振器的光波通常可以获取非零的几何相位。尽管根据Pancharatnam准则,初始和最终极化状态同相,并且无法使用干涉叠加法进行测量,但仍存在该几何相位。因此,在Pancharatnam相与通过偏振器的光波获得的完整几何相之间存在差异。我们以基于全反射偏振器的特定示例来说明我们的工作。

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