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High visibility first-order subwavelength interference based on light pulse storage via electromagnetically induced transparency

机译:通过电磁感应的透明性基于光脉冲存储的高可见度一阶亚波长干扰

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摘要

We achieved high visibility first-order subwavelength interference based on light pulse storage and retrieval technique via electromagnetically induced transparency (EIT) effect in a Pr3+:Y2SiO5 crystal. The interference field distribution of a double-slit was first stored in a Pr3+:Y2SiO5 crystal based on EIT effect, and then it was read out by a spatially modulated readout beam. The retrieved output field is proportional to the product of the input interference field of the double-slit and the spatially modulated readout field. High visibility first-order subwavelength interference with an effective wavelength of λ, where λ is the wavelength of the input light field and n is any positive integer, can be obtained by designing the spatial modulation structure of the readout field. Experimentally, first-order subwavelength interference with an effective wavelength of λ/3 and a visibility of 67% were demonstrated. Such first-order subwavelength interference has important applications on high resolution optical lithography.
机译:我们基于光脉冲存储和检索技术,通过在Pr 3 + :Y2SiO5晶体中的电磁感应透明(EIT)效应实现了高可见度的一阶亚波长干涉。首先基于EIT效应将双缝的干涉场分布存储在Pr 3 + :Y2SiO5晶体中,然后通过空间调制的读出光束将其读出。检索到的输出场与双缝输入干扰场和空间调制读出场的乘积成正比。通过设计读出场的空间调制结构,可以获得有效波长为λ/ n的高可见度一阶亚波长干涉,其中λ是输入光场的波长,n是任何正整数。实验上,证明了有效波长为λ/ 3和可见度为67%的一阶亚波长干涉。这种一阶亚波长干涉在高分辨率光刻上具有重要的应用。

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