日本地球惑星科学連合2024年大会

講演情報

[E] ポスター発表

セッション記号 S (固体地球科学) » S-IT 地球内部科学・地球惑星テクトニクス

[S-IT14] 地球深部科学

2024年5月31日(金) 17:15 〜 18:45 ポスター会場 (幕張メッセ国際展示場 6ホール)

コンビーナ:河合 研志(東京大学大学院理学系研究科地球惑星科学専攻)、土屋 旬(愛媛大学地球深部ダイナミクス研究センター)、石井 貴之(岡山大学惑星物質研究所)、飯塚 理子(早稲田大学教育学部理学科地球科学専修)

17:15 〜 18:45

[SIT14-P04] Equation of state of high-spin FeS V and its stability field

*浦川 啓1足立 菜摘1櫻井 萌1 (1.岡山大学)

キーワード:硫化鉄、スピン状態、惑星核

FeS has been considered to be one of the constituents of the planetary cores. Many polymorphs are known for FeS, which have superlattice structures related to NiAs-type structures. Under high pressure and high temperature conditions in planetary interiors, the FeS V phase with a simple NiAs-type structure has a wide stability region. At room temperature, FeS undergoes a transition from the high-spin FeS II to the low-spin FeS III around 6 GPa, while FeS V, which is stable at high temperatures, is also considered to be in a high-spin states below 5 GPa and a low-spin states above 10 GPa. In this study, we have investigated the stability region and the equation of state of the high-spin FeS V up to 5 GPa from the high-temperature and high-pressure experiments using synchrotron X-rays. The isothermal bulk modulus of high-spine FeS is about 20% smaller than the bulk modulus of low-spine FeS V determined by Urakawa et al. (2004). The present experiments show that the phase boundary between FeS IV and FeS V is consistent with the Néel temperature at 1 atm. These are important fundamental data for discussing the internal structure of relatively small bodies.