
| ID | 69357 |
| フルテキストURL | |
| 著者 |
Maitani, Shuhou
Department of Physics, School of Science and Technology, Meiji University
Sinmyo, Ryosuke
Department of Physics, School of Science and Technology, Meiji University
Ishii, Takayuki
Institute for Planetary Materials, Okayama University
Yoza, Kenji
Bruker Japan
|
| 抄録 | We conducted Raman spectroscopy measurements of 4H-SiC and 6H-SiC up to 69 GPa and 1023 K to assess the stability and bonding of SiC at high pressure and temperature. Both optic and acoustic modes were observed at wide pressure and temperature ranges. The temperature shifts of the Raman frequencies were fitted by the equation with the Bose–Einstein distribution function, and we found that the shifts were almost insensitive to the pressure. The mode Grüneisen coefficients weakly depend on the pressure and temperature, suggesting the sluggish transition of the crystal structure, unlike the previous experiments showing the transition or decomposition of SiC at high pressure and temperature conditions. Inert transitions are confirmed by Raman measurements and annealing experiments using multiple high-pressure apparatuses. The crystallinity may be a hidden critical parameter in the experiments to determine the stable polytypes of SiC under high pressure and temperature.
|
| キーワード | SiC
Raman
phase transitions
high pressure
high temperature
diamond anvil cell
crystal structure
|
| 発行日 | 2024-06-13
|
| 出版物タイトル |
Journal of Physics Communications
|
| 巻 | 8巻
|
| 号 | 6号
|
| 出版者 | IOP Publishing
|
| 開始ページ | 065001
|
| ISSN | 2399-6528
|
| 資料タイプ |
学術雑誌論文
|
| 言語 |
英語
|
| OAI-PMH Set |
岡山大学
|
| 著作権者 | © 2024 The Author(s).
|
| 論文のバージョン | publisher
|
| DOI | |
| Web of Science KeyUT | |
| 関連URL | isVersionOf https://doi.org/10.1088/2399-6528/ad5410
|
| ライセンス | http://creativecommons.org/licenses/by/4.0
|
| Citation | Shuhou Maitani et al 2024 J. Phys. Commun. 8 065001
|
| 助成情報 |
( 公益財団法人日本科学協会 / Japan Science Society )
19H01989:
高圧実験と地球化学の複合アプローチから地球深部酸化還元状態進化を探る
( 文部科学省 / Ministry of Education )
23H01277:
極短時間・高温・高圧下反応実験による地球惑星物質進化の解明
( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )
|