Accurate THz measurements of permittivity and permeability of BiFeO3 thin films

IF 2.5 3区 物理与天体物理 Q2 OPTICS Optics Communications Pub Date : 2025-04-15 DOI:10.1016/j.optcom.2025.131872
Gian Paolo Papari , Zahra Mazaheri , Francesca Lo Presti , Graziella Malandrino , Antonello Andreone
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Abstract

The electrodynamic properties of BiFeO3 films in the THz region are investigated via time domain spectroscopy. Combining the use of transmission (T˜) and reflection (R˜) measurements under normal incidence, the refractive index and impedance of the samples under test are evaluated using a retrieval method. From T˜ (R˜) data two complex functions describing the refractive index n˜T (n˜R) and impedance z˜T (z˜R) are extracted from the independent minimization of the error functions given by the difference between the theoretical model and measurements. Knowledge of the pairs (n˜T, n˜R) and (z˜T, z˜R) enables to calculate with a high accuracy both complex permittivity ε˜ and permeability μ˜ of the sample. Signatures of magnetoelectric effects and phononic resonances are observed in the permittivity and permeability functions and discussed in detail.
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BiFeO3薄膜介电常数和磁导率的精确太赫兹测量
采用时域谱法研究了BiFeO3薄膜在太赫兹区的电动力学特性。结合在法向入射下的透射(T ~)和反射(R ~)测量,使用检索方法评估被测样品的折射率和阻抗。从T ~ (R ~)数据中,从理论模型和测量值之间的差异给出的误差函数的独立最小化中提取了描述折射率n ~ T (n ~ R)和阻抗z ~ T (z ~ R)的两个复函数。了解这些对(n ~ T, n ~ R)和(z ~ T, z ~ R),可以高精度地计算样品的复介电常数ε ~和磁导率μ ~。在介电常数和磁导率函数中观察到磁电效应和声子共振的特征,并进行了详细的讨论。
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来源期刊
Optics Communications
Optics Communications 物理-光学
CiteScore
5.10
自引率
8.30%
发文量
681
审稿时长
38 days
期刊介绍: Optics Communications invites original and timely contributions containing new results in various fields of optics and photonics. The journal considers theoretical and experimental research in areas ranging from the fundamental properties of light to technological applications. Topics covered include classical and quantum optics, optical physics and light-matter interactions, lasers, imaging, guided-wave optics and optical information processing. Manuscripts should offer clear evidence of novelty and significance. Papers concentrating on mathematical and computational issues, with limited connection to optics, are not suitable for publication in the Journal. Similarly, small technical advances, or papers concerned only with engineering applications or issues of materials science fall outside the journal scope.
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