Mid‐infrared dual‐comb polarimetry of anisotropic samples

IF 2.6 Q2 MULTIDISCIPLINARY SCIENCES Natural sciences (Weinheim, Germany) Pub Date : 2023-02-14 DOI:10.1002/ntls.20220056
K. Hinrichs, Brianna Blevins, A. Furchner, N. S. Yadavalli, Sergiy Minko, R. Horvath, Markus Mangold
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引用次数: 5

Abstract

The mid-infrared (mid-IR) anisotropic optical response of a material probes vibrational fingerprints and absorption bands sensitive to order, structure and direction dependent stimuli. Such anisotropic properties play a fundamental role in catalysis, optoelectronic, photonic, polymer and biomedical research and applications. Infrared dual-comb polarimetry (IR-DCP) is introduced as a powerful new spectroscopic method for the analysis of complex dielectric functions and anisotropic samples in the mid-IR range. IR DCP enables novel hyperspectral and time-resolved applications far beyond the technical possibilities of classical Fourier-transform IR (FTIR) approaches. The method unravels structure–spectra relations at high spectral bandwidth (100 cm–1) and short integration times of 65 μ s, with previously unattainable time resolutions for spectral IR polarimetric measurements for potential studies of noncyclic and irreversible processes. The polarimetric capabilities of IR-DCP are demonstrated by investigating an anisotropic inhomogeneous free-standing nanofiber scaffold for neural tissue applications. Polarization sensitive multi-angle dual-comb transmission amplitude and absolute phase measurements (separately for ss-, pp-, ps-and sp-polarized light) allow the in-depth probing of the samples’ orientation dependent vibrational absorption properties. Mid-IR anisotropies can be quickly identified by cross-polarized IR-DCP polarimetry.

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各向异性样品的中红外双梳偏振法
材料的中红外(中红外)各向异性光学响应探测对顺序、结构和方向相关刺激敏感的振动指纹和吸收带。这种各向异性在催化、光电、光子、聚合物和生物医学的研究和应用中发挥着重要作用。红外双梳偏振法(IR-DCP)是分析中红外复杂介电函数和各向异性样品的一种强大的新光谱方法。红外DCP使新的高光谱和时间分辨应用远远超出了经典傅里叶变换红外(FTIR)方法的技术可能性。该方法在高光谱带宽(100 cm-1)和短积分时间(65 μ s)下揭示了结构-光谱关系,具有以前无法实现的光谱红外偏振测量的时间分辨率,可用于非循环和不可逆过程的潜在研究。通过研究神经组织应用的各向异性非均匀独立纳米纤维支架,证明了IR-DCP的极化能力。偏振敏感多角度双梳传输振幅和绝对相位测量(分别用于ss-, pp-, ps-和sp-偏振光)允许深入探测样品的方向依赖的振动吸收特性。交叉极化IR-DCP偏振法可以快速识别中红外各向异性。
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