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Asymmetric localization and symmetric diffraction-free transmission in synthetic photonic lattice with anti-parity-time symmetry

机译:具有抗奇偶校正时间对称性的合成光子晶格中的不对称定位和对称衍射无速度

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We study, to the best of our knowledge, the first observations of light propagation in synthetic photonic lattice with anti-parity-time symmetry by tuning the gain or loss of two coupled fiber rings alternatively and corresponding phase distribution periodically. By tuning the phase phi and the wave number Q in the lattice, asymmetric transmission of the light field can be achieved for both long and short loops when phi not equal n pi/2 (n is an integer). Further investigations demonstrate that asymmetric localization of the light field in the long loop and symmetric diffraction-free transmission in two loops can both be realized by changing these two parameters. Our work provides a new method to obtain anti-parity-time symmetry in synthetic photonic lattice and paves a broad way to achieve novel optical manipulation in photonic devices. (C) 2020 Optical Society of America
机译:我们以我们所知,通过调整两个耦合光纤环的增益或损耗以及周期性的相位分布来研究合成光子晶格中具有抗奇偶差时对称的合成光子晶格中光传播的首次观察。 通过调谐晶格中的相位PHI和波数Q,当PHI不等于N PI / 2(n是整数)时,可以为长而短的环路实现光场的不对称传输。 进一步的研究表明,通过改变这两个参数,可以实现两个环中的长环和对称衍射传递中的光场的不对称定位。 我们的作品提供了一种新的方法来获得合成光子晶格中的防奇偶差时对称性,并铺平了一种广泛的光子器件中的新型光学操作。 (c)2020美国光学学会

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