Tian Si-Cong, Wan Ren-Gang, Wang Li-Jie, Shu Shi-Li, Lu Huna-Yu, Zhang Xin, Tong Cun-Zhu, Feng Jing-Liang, Xiao Min, Wang Li-Jun
Opt Express. 2018 Dec 10;26(25):32918-32930. doi: 10.1364/OE.26.032918.
An asymmetric double semiconductor quantum well is proposed to realize two-dimensional parity-time (PT) symmetry and an electromagnetically induced grating. In such a nontrivial grating with PT symmetry, the incident probe photons can be diffracted to selected angles depending on the spatial relationship of the real and imaginary parts of the refractive index. Such results are due to the interference mechanism between the amplitude and phase of the grating and can be manipulated by the probe detuning, modulation amplitudes of the standing wave fields, and interaction length of the medium. Such a system may lead to new approaches of observing PT-symmetry-related phenomena and has potential applications in photoelectric devices requiring asymmetric light transport using semiconductor quantum wells.
提出了一种非对称双半导体量子阱来实现二维宇称时间(PT)对称和电磁诱导光栅。在这种具有PT对称性的非平凡光栅中,入射探测光子可以根据折射率实部和虚部的空间关系衍射到选定的角度。这些结果归因于光栅振幅和相位之间的干涉机制,并且可以通过探测失谐、驻波场的调制幅度以及介质的相互作用长度来操纵。这样的系统可能会带来观察与PT对称相关现象的新方法,并且在需要使用半导体量子阱进行非对称光传输的光电器件中具有潜在应用。