Raman Forbidden Layer-Breathing Modes in Layered Semiconductor Materials Activated by Phonon and Optical Cavity Effects
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arXiv
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| Autori principali: | , , , , , , , , , , , |
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| Natura: | Preprint |
| Pubblicazione: |
2025
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| _version_ | 1866913727149768704 |
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| author | Lin, Miao-Ling Wu, Jiang-Bin Liu, Xue-Lu Liu, Tao Mei, Rui Wu, Heng Guan, Shan Xie, Jia-Liang Luo, Jun-Wei Wang, Lin-Wang Ferrari, Andrea C. Tan, Ping-Heng |
| author_facet | Lin, Miao-Ling Wu, Jiang-Bin Liu, Xue-Lu Liu, Tao Mei, Rui Wu, Heng Guan, Shan Xie, Jia-Liang Luo, Jun-Wei Wang, Lin-Wang Ferrari, Andrea C. Tan, Ping-Heng |
| contents | We report Raman forbidden layer-breathing modes (LBMs) in layered semiconductor materials (LSMs). The intensity distribution of all observed LBMs depends on layer number, incident light wavelength and refractive index mismatch between LSM and underlying substrate. These results are understood by a Raman scattering theory via the proposed spatial interference model, where the naturally occurring optical and phonon cavities in LSMs enable spatially coherent photon-phonon coupling mediated by the corresponding one-dimensional periodic electronic states. Our work reveals the spatial coherence of photon and phonon fields on the phonon excitation via photon/phonon cavity engineering. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2503_05389 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Raman Forbidden Layer-Breathing Modes in Layered Semiconductor Materials Activated by Phonon and Optical Cavity Effects Lin, Miao-Ling Wu, Jiang-Bin Liu, Xue-Lu Liu, Tao Mei, Rui Wu, Heng Guan, Shan Xie, Jia-Liang Luo, Jun-Wei Wang, Lin-Wang Ferrari, Andrea C. Tan, Ping-Heng Materials Science Mesoscale and Nanoscale Physics Optics We report Raman forbidden layer-breathing modes (LBMs) in layered semiconductor materials (LSMs). The intensity distribution of all observed LBMs depends on layer number, incident light wavelength and refractive index mismatch between LSM and underlying substrate. These results are understood by a Raman scattering theory via the proposed spatial interference model, where the naturally occurring optical and phonon cavities in LSMs enable spatially coherent photon-phonon coupling mediated by the corresponding one-dimensional periodic electronic states. Our work reveals the spatial coherence of photon and phonon fields on the phonon excitation via photon/phonon cavity engineering. |
| title | Raman Forbidden Layer-Breathing Modes in Layered Semiconductor Materials Activated by Phonon and Optical Cavity Effects |
| topic | Materials Science Mesoscale and Nanoscale Physics Optics |
| url | https://arxiv.org/abs/2503.05389 |