Liu Ning, Qu Shi-Wei
Opt Express. 2024 Jun 3;32(12):22031-22044. doi: 10.1364/OE.525385.
Waveguide grating antennas are widely adopted in beam-steering devices, typically enabling the beam steering in longitudinal direction within a two-dimensional scanning optical array by changing the input wavelength. However, traditional waveguide grating antennas suffer from limited tuning range due to low dispersion of the gratings. In this paper, a compact silicon grating waveguide antenna array is proposed with enhanced wavelength sensitivity by introducing a periodically modulated hybrid plasmonic mode. The hybrid plasmonic mode is supported by the hybrid plasmonic waveguides (HPWs) composed of silicon waveguides and periodic subwavelength silver strips. In order to convert the guided waves to the radiated waves, a series of silicon emitting segments are deposited above the HPWs. Additionally, the horizontally arranged array of HPWs also acts as a reflector of the downward radiation, resulting in an effective unidirectional emission. Through the optimization of physical parameters, the proposed antenna array achieves a wavelength-length tuning efficiency up to 0.3°/nm within the wavelength range of 1500∼1600 nm, exhibiting a significant improvement compared with traditional ones. Moreover, an average upward emissivity exceeding 80% with a maximum value of 89% within the 100 nm bandwidth is demonstrated through the numerical simulations. The proposed compact antenna array provides an alternative solution in realizing large-scale integrated high-tuning-efficiency optical beam-steering devices.
波导光栅天线在光束转向装置中被广泛采用,通常通过改变输入波长在二维扫描光学阵列中实现纵向光束转向。然而,由于光栅的低色散,传统波导光栅天线的调谐范围有限。本文提出了一种紧凑的硅光栅波导天线阵列,通过引入周期性调制的混合等离子体模式提高波长灵敏度。混合等离子体模式由由硅波导和周期性亚波长银条组成的混合等离子体波导(HPW)支持。为了将导波转换为辐射波,在HPW上方沉积了一系列硅发射段。此外,水平排列的HPW阵列还充当向下辐射的反射器,从而实现有效的单向发射。通过物理参数的优化,所提出的天线阵列在1500∼1600 nm波长范围内实现了高达0.3°/nm的波长调谐效率,与传统天线阵列相比有显著提高。此外,通过数值模拟表明,在100 nm带宽内平均向上发射率超过80%,最大值为89%。所提出的紧凑天线阵列为实现大规模集成高调谐效率光束转向装置提供了一种替代解决方案。