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独立形态与聚乙烯混合形态朱红颜料的太赫兹光谱分析

Terahertz Spectroscopic Analysis of the Vermilion Pigment in Free-Standing and Polyethylene-Mixed Forms.

作者信息

Lee Ji Eun, Lee Howon, Kim Jangwon, Jung Taek Sun, Kim Jae Ha, Kim Jonghyeon, Baek Na Yeon, Song You Na, Lee Han Hyoung, Kim Jae Hoon

机构信息

Department of Physics, Yonsei University, 50 Yonsei-Ro, Seodaemun-Gu, Seoul 03722, Republic of Korea.

Graduate School of Cultural Heritage, Korea National University of Cultural Heritage, Buyeo 33115, Republic of Korea.

出版信息

ACS Omega. 2021 May 20;6(21):13802-13806. doi: 10.1021/acsomega.1c01336. eCollection 2021 Jun 1.

Abstract

Terahertz spectroscopy can be utilized as an effective nondestructive identification tool for the study of artist's pigments. Consequently, extensive measurements have been conducted on representative pigment species, and a few terahertz spectral databases have been constructed. However, the reported spectra were often acquired from pigment samples mixed with polyethylene at room temperature with low resolution, which often led to low-quality spectra with unresolved overlapping lines further broadened due to thermal effects. Here, we present our study of vermilion (HgS, mercury sulfide) as an illustration of how we can overcome such difficulties by studying free-standing oil-paint samples at room temperature and then by performing low-temperature measurements on polyethylene-mixed samples to minimize line broadening due to thermal effects. Our results identify clearly resolved absorption peaks due to lattice vibrations of vermilion at 40.4, 44.5, and 89.9 cm at 2 K. The temperature dependence of the peak shift and line broadening reveals anharmonic characteristics of these lattice vibrational modes. Our approach will definitely suggest new ways to improve and enhance existing terahertz spectral databases of ancient and modern pigments toward actual analysis, diagnosis, and conservation of heritage artworks.

摘要

太赫兹光谱可作为一种有效的无损鉴定工具,用于研究艺术家颜料。因此,已对代表性颜料种类进行了广泛测量,并构建了一些太赫兹光谱数据库。然而,所报道的光谱通常是在室温下从与聚乙烯混合的颜料样品中获取的,分辨率较低,这常常导致光谱质量较差,未分辨的重叠谱线因热效应而进一步展宽。在此,我们展示对朱砂(HgS,硫化汞)的研究,以此说明我们如何通过在室温下研究独立的油画颜料样品,然后对与聚乙烯混合的样品进行低温测量,以尽量减少热效应导致的谱线展宽,从而克服这些困难。我们的结果明确识别出在2 K时,朱砂晶格振动在40.4、44.5和89.9 cm处清晰分辨的吸收峰。峰位移动和谱线展宽的温度依赖性揭示了这些晶格振动模式的非谐特性。我们的方法肯定会为改进和增强古代和现代颜料的现有太赫兹光谱数据库提供新途径,以用于对遗产艺术品进行实际分析、诊断和保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0261/8173543/470772181fb5/ao1c01336_0002.jpg

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