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長谷川 雄太; 青木 尊之*; 小林 宏充*; 白崎 啓太*
no journal, ,
自転車のロードレースの空力解析のため、大規模LES計算を実装および実行する。複数GPU計算を行うため、コヒーレント構造スマゴリンスキーモデルを導入した細分化格子LBMを用いた。単体走行および4人の集団走行の検証計算は、既往研究の実験および計算の結果とよく一致した。大規模計算のベンチマークとして72人の自転車の集団の空力解析を実施し、192GPUを用いて4日で計算を完了した。この計算コストは、応用解析に対して十分実用的である。
田中 圭太*; 平野 航亮*; 山口 敦史*; 村松 はるか*; 林 佑*; 湯浅 直樹*; 中村 圭佑; 滝本 美咲; 羽場 宏光*; 白崎 謙次*; et al.
no journal, ,
Determination of the isomer energy of Th is essential to realize a nuclear clock by an UV laser excitation. Several experiments such as spectroscopy of internal conversion electrons or
-ray spectroscopy using TES or magnetic calorimeters have been made and the isomer energy seems to converge to around 8 eV. In 2019, we have measured the energy of the 29.2-keV
-ray with a single-pixel TES, and determined the isomer energy to be 8.30
0.92 eV (A. Yamaguchi et al. 2019). We continued our experiments at Tohoku University to reduce the statistical errors and determination of the isomer energy with smaller uncertainty. We optimized a TES design and achieved an improved energy resolution of about 20 eV (H. Muramatsu et al. 2020). By using 3 pixels of this new TES elements with a 5 times stronger
U source, the new measurements we reperformed. We are also trying to resolve two emission lines separating by the isomer energy, which were successfully demonstrated with magnetic calorimeters (T. Sikorskyet al. 2020). We will report the results obtained in our new measurement campaigns.