Zou Bo, Wang Xiaonan, Zhou Yu, Zhou Yan, Wu Yanyan, Xing Tiantian, He Yang, Yang Jinfeng, Chen Yuxiang, Ren Peng, Sun Huarui
School of Science and Ministry of Industry and Information Technology Key Laboratory of Micro-Nano Optoelectronic Information System, Harbin Institute of Technology Shenzhen, Shenzhen, Guangdong, 518055, P. R. China.
State Key Laboratory of Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences, Beijing, 100083, P. R. China.
Small. 2023 May;19(19):e2206932. doi: 10.1002/smll.202206932. Epub 2023 Feb 20.
Optical anisotropy, which is quantified by birefringence (Δn) and linear dichroism (Δk), can significantly modulate the angle-resolved polarized Raman spectroscopy (ARPRS) response of anisotropic layered materials (ALMs) by external interference. This work studies the separate modulation of birefringence on the ARPRS response and the intrinsic response by selecting transparent birefringent crystal α-MoO as an excellent platform. It is found that there are several anomalous ARPRS responses in α-MoO that cannot be reproduced by the real Raman tensor widely used in non-absorbing materials; however, they can be well explained by considering the birefringence-induced Raman selection rules. Moreover, the systematic thickness-dependent study indicates that birefringence modulates the ARPRS response to render an interference pattern; however, the amplitude of modulation is considerably lower than that by linear dichroism as occurred in black phosphorous. This weak modulation brings convenience to the crystal orientation determination of transparent ALMs. Combining the atomic vibrational pattern and bond polarizability model, the intrinsic ARPRS response of α-MoO is analyzed, giving the physical origins of the Raman anisotropy. This study employs α-MoO as an example, although it is generally applicable to all transparent birefringent ALMs.
光学各向异性由双折射(Δn)和线性二向色性(Δk)定量表征,通过外部干涉可显著调节各向异性层状材料(ALM)的角分辨偏振拉曼光谱(ARPRS)响应。本研究以透明双折射晶体α-MoO为理想平台,分别研究了双折射对ARPRS响应和本征响应的调制作用。研究发现,α-MoO中存在几种异常的ARPRS响应,这些响应无法用非吸收材料中广泛使用的实际拉曼张量来重现;然而,考虑双折射诱导的拉曼选择规则,可以很好地解释这些响应。此外,系统的厚度依赖性研究表明,双折射调节ARPRS响应以形成干涉图样;然而,其调制幅度远低于黑磷中线性二向色性所产生的调制幅度。这种微弱的调制为透明ALM的晶体取向确定带来了便利。结合原子振动模式和键极化率模型,分析了α-MoO的本征ARPRS响应,揭示了拉曼各向异性的物理起源。本研究以α-MoO为例,尽管该方法普遍适用于所有透明双折射ALM。