Chiral phonon and in-plane Raman optical activity of anisotropic layered α − Mo O 3
Тип публикации: Journal Article
Дата публикации: 2024-08-22
scimago Q1
wos Q2
white level БС1
SJR: 1.303
CiteScore: 6.2
Impact factor: 3.7
ISSN: 24699950, 24699969, 10980121, 1550235X
Краткое описание
The interaction between electromagnetic fields and optical phonons in two-dimensional (2D) van der Waals (vdW) materials such as $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$ produces a strong phonon-polariton effect within the midinfrared to terahertz frequency range. This phonon-polariton effect is highly anisotropic in nature because of the in-plane anisotropic lattice vibration of $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$, which needs to be explored. In this paper, we have successfully synthesized cm-scale high-quality $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$ crystals using the physical vapor deposition technique. Using helicity-resolved Raman spectroscopy, we have investigated the chiral phonon modes in $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$ by varying flake thicknesses as well as a fast-hand distinction between the ${A}_{g}$ and ${B}_{1g}$ modes in different flake thicknesses exfoliated from the parent crystal. Our findings indicate the existence of chiral phonons in $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$ and their strong dependency of chirality over the thickness of the flakes. Additionally, our analysis reveals strong in-plane anisotropy in as-grown $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$, which is confirmed through angle-resolved Raman spectroscopy, and the degree of anisotropy is estimated quantitatively with respect to the thickness of the $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$ flake. It is observed that the anisotropy ratio is different for different Raman modes. However, the variation of the anisotropy ratio for a particular mode is strongly dependent on the thickness of $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$. Furthermore, two sets of ${A}_{g}$ modes were observed in $\ensuremath{\alpha}\text{\ensuremath{-}}\mathrm{Mo}{\mathrm{O}}_{3}$ through the Raman optical activity measurements. One set of ${A}_{g}$ modes is oriented along the $a$ axis and another set along the $b$ axis. In this study of chiral phonon modes and the corresponding anisotropy along the in-plane direction, we provide valuable insights into the design of polarization-sensitive photonic devices.
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Kumar R. et al. Chiral phonon and in-plane Raman optical activity of anisotropic layered α−MoO3 // Physical Review B. 2024. Vol. 110. No. 8. 085423
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Kumar R., Barman P. K., Nayak P. K., Ramachandra Rao M. S. Chiral phonon and in-plane Raman optical activity of anisotropic layered α−MoO3 // Physical Review B. 2024. Vol. 110. No. 8. 085423
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TY - JOUR
DO - 10.1103/physrevb.110.085423
UR - https://link.aps.org/doi/10.1103/PhysRevB.110.085423
TI - Chiral phonon and in-plane Raman optical activity of anisotropic layered α−MoO3
T2 - Physical Review B
AU - Kumar, Ravindra
AU - Barman, Prahalad Kanti
AU - Nayak, Pramoda K.
AU - Ramachandra Rao, M S
PY - 2024
DA - 2024/08/22
PB - American Physical Society (APS)
IS - 8
VL - 110
SN - 2469-9950
SN - 2469-9969
SN - 1098-0121
SN - 1550-235X
ER -
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@article{2024_Kumar,
author = {Ravindra Kumar and Prahalad Kanti Barman and Pramoda K. Nayak and M S Ramachandra Rao},
title = {Chiral phonon and in-plane Raman optical activity of anisotropic layered α−MoO3},
journal = {Physical Review B},
year = {2024},
volume = {110},
publisher = {American Physical Society (APS)},
month = {aug},
url = {https://link.aps.org/doi/10.1103/PhysRevB.110.085423},
number = {8},
pages = {085423},
doi = {10.1103/physrevb.110.085423}
}
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