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激光辐照下岩石漆光导的光热协同机制

The Photothermal Synergistic Mechanism of Rock Varnish Photoconductance Under Laser Irradiation.

作者信息

Miao Xinyang, An Tiantian, Wang Lijun, Xiong Shujie, Zhang Huanxi, Yi Jiahao, Zhao Bingbing, Zhao Kun

机构信息

Key Laboratory of Oil and Gas Terahertz Spectroscopy and Photoelectric Detection, Petroleum and Chemical Industry Federation, China University of Petroleum, Beijing 102249, China.

出版信息

Materials (Basel). 2024 Nov 28;17(23):5841. doi: 10.3390/ma17235841.

Abstract

Rock varnishes, complex structures formed by long-term deposition on rocks, exhibit unique light absorption characteristics and are widely distributed across arid environments on Earth's surface. The varnishes possess the ability to absorb and convert photons from solar radiation into electrons, which represents a newly discovered fundamental energy form in nature, with further elucidation required regarding the underlying mechanism of how semiconductor minerals respond to light radiation. The regulations governing the photoconductive responses of samples from the Alashan region in Gobi, China, and the mechanisms exhibited by rock rock varnishes under various bias voltages and irradiation wavelengths (532 nm, 808 nm, and 1064 nm) were studied. The photoconductivity response is positively correlated with the applied external bias, and the response caused by shorter wavelengths is larger. The synergistic effect was quantitatively assessed by monitoring and fitting the correlation between photoconductivity, temperature, and time during laser irradiation. As an effective method to study the fundamental physical properties of semiconductor minerals, the photoconductivity testing will help to establish a fundamental framework for investigating the intrinsic physical characteristics of natural rock varnishes.

摘要

岩石漆是长期沉积在岩石上形成的复杂结构,具有独特的光吸收特性,广泛分布于地球表面的干旱环境中。这些漆具有吸收并将太阳辐射中的光子转化为电子的能力,这代表了自然界中一种新发现的基本能量形式,关于半导体矿物如何响应光辐射的潜在机制仍有待进一步阐明。研究了中国戈壁阿拉善地区样品的光电导响应规律,以及岩石漆在不同偏置电压和辐照波长(532nm、808nm和1064nm)下表现出的机制。光电导响应与施加的外部偏置呈正相关,且较短波长引起的响应更大。通过监测和拟合激光照射期间光电导率、温度和时间之间的相关性,对协同效应进行了定量评估。作为研究半导体矿物基本物理性质的有效方法,光电导率测试将有助于建立一个研究天然岩石漆固有物理特性的基本框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8a9/11642261/69bb051d17f3/materials-17-05841-g001.jpg

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