Li Qiwei, Alenin Andrey S, Tyo J Scott
Appl Opt. 2020 Oct 20;59(30):9359-9367. doi: 10.1364/AO.404623.
Channeled spectropolarimeters (CSPs) are capable of estimating spectrally resolved Stokes parameters from a single modulated spectrum. However, channel crosstalk and subsequent spectral resolution loss reduce the reconstruction accuracy and limit the systems' scope of application. In this paper, we propose a spectral-temporal modulation strategy with the aim of extending channel bandwidth and improving reconstruction accuracy by leveraging the hybrid carriers and allocating channels in the two-dimensional Fourier domain that yield optimal performance. The scheme enables spectral bandwidth and temporal bandwidth to be traded off, and provides flexibility in selecting demodulation strategies based on the features of the input. We present an in-depth comparison of different systems' performances in various input features under the presence of noise. Simulation results show that the hybrid-modulation strategy offers the best comprehensive performance as compared to the conventional CSP and dual-scan techniques.
通道分光偏振计(CSP)能够从单个调制光谱中估计光谱分辨的斯托克斯参数。然而,通道串扰以及随后的光谱分辨率损失会降低重建精度,并限制系统的应用范围。在本文中,我们提出了一种光谱 - 时间调制策略,旨在通过利用混合载波并在二维傅里叶域中分配通道来扩展通道带宽并提高重建精度,从而实现最佳性能。该方案能够在光谱带宽和时间带宽之间进行权衡,并根据输入特征在选择解调策略方面提供灵活性。我们深入比较了在存在噪声的情况下不同系统在各种输入特征下的性能。仿真结果表明,与传统的CSP和双扫描技术相比,混合调制策略具有最佳的综合性能。