Zhang Hui, Peng Kangzhun, Jiang Huan, Li Wenhua, Zhao Weiren
Opt Express. 2022 Jun 6;30(12):20554-20563. doi: 10.1364/OE.457253.
A multifunctional metasurface capable of dynamic control for polarization selectivity and absorption is proposed by controlling the phase of GeSbTe (GST) in the near-infrared region. At amorphous state of GST (a-GST), the proposed GST strip array realized polarization selectivity in transmission-reflection integrated modes. The high-efficiency asymmetric transmission (AT = 0.92) and asymmetric reflection (AR = -0.82) are both obtained by selectively exciting Mie multipole resonances. With the transition from a-GST to crystalline (c-GST) state, the giant polarization selectivity almost disappeared, and the absorptions climb from < 0.1 to > 0.9. The maximum modulation depth reaches 94%. The mechanism of the dynamic switching between polarization selectivity and absorption is quantitively analyzed via multipole expansion. The GST based metasurfaces simultaneously possess excellent switchable capability for AT, AR, and absorption without refabricating structures, which is promising to the applications for next generation optical devices.
通过控制近红外区域中锗锑碲(GST)的相位,提出了一种能够对偏振选择性和吸收进行动态控制的多功能超表面。在所提出的GST条形阵列中,处于非晶态的GST(a-GST)在透射-反射集成模式下实现了偏振选择性。通过选择性地激发米氏多极共振,获得了高效的不对称透射(AT = 0.92)和不对称反射(AR = -0.82)。随着从a-GST向晶态(c-GST)状态的转变,巨大的偏振选择性几乎消失,吸收从<0.1攀升至>0.9。最大调制深度达到94%。通过多极展开对偏振选择性和吸收之间动态切换的机制进行了定量分析。基于GST的超表面在不重新制造结构的情况下,同时对AT、AR和吸收具有出色的可切换能力,这对下一代光学器件的应用具有前景。