
XXXVII IUPAP Conference on Computational Physics
BN aggregation from BH3NH3 under high temperatures and pressures leading to c-BN formation
D. Murayama
●Soul, South Korea
●Oral
●2026.8.10
Gordon Research Conference on Research at High Pressure
Observations of metallic liquid silicon under laser shock compression up to 540 GPa
N. Ozaki
●New Hampshire, United States
●Poster
●2026.7.22
Gordon Research Conference on Research at High Pressure
The Hugoniot temperature of nanopolycrystalline diamond/p>
N. Yamagata, Y. Kumagai, S. Yamamoto, K. Fujita, A. Amouretti, R. Furukawa, T. Irifune, T. Isotani, R. Kodama, H.Nakamura, C. Nakatsuji, T.Sano, K. Shigemori, K.Taketoshi and N.Ozaki
●New Hampshire, United States
●Poster
●2026.7.22
Gordon Research Conference on Research at High Pressure
In-situ XRD measurements of laser shock compressed C—H—O materials and an investigation of diamond formation conditions/p>
K. Taketoshi, D. Murayama, A. Amouretti, R. Furukawa, R. Kodama, K. Miyanishi, H. Nakamura, C. Nakatsuji, T. Sano, Y. Seto, K. Shigemori, M. Yabashi, T. Yabuuchi, N. Yamagata and N. Ozaki
●New Hampshire, United States
●Poster
●2026.7.22
Gordon Research Seminar on Research at High Pressure
In-situ XRD measurements of laser shock compressed C—H—O materials and an investigation of diamond formation conditions/p>
K. Taketoshi, D. Murayama, A. Amouretti, R. Furukawa, R. Kodama, K. Miyanishi, H. Nakamura, C. Nakatsuji, T. Sano, Y. Seto, K. Shigemori, M. Yabashi, T. Yabuuchi, N. Yamagata and N. Ozaki
●New Hampshire, United States
●oral
●2026.7.18
International Conference on High Energy Density Laboratory Astrophysics and High Energy Density Science 2026 (HEDLA/HEDS2026)
Diffusion mechanism of carbon in C–H–O doubly superionic state
D. Murayama, S. Ohmura, K. de Villa, B. Militzer, R. Kodama and N. Ozaki
●Yokohama,Japan
●Oral
●2026.4.24
International Conference on High Energy Density Laboratory Astrophysics and High Energy Density Science 2026 (HEDLA/HEDS2026)
Laser-driven shock compression and Hugoniot of CaSiO3 glass up to 900 GPa
A. Amouretti, K. Nonaka, K. Fujita, N. Kato, X. Liu, Y. Nakanishi, K. Nishitani, D. Ohkura, R. Sakaguchi, T. Sano, K. Taketoshi1, N. Yamagata, Y. Wu, K. Yamamoto and N. Ozaki1,3
●Yokohama,Japan
●Poter
●2026.4.23
The 6th Smart Laser Processing Conference 2026 (SLPC2026)
Hybrid CNN-MLP Model for Teacherless Prediction of Laser-Induced Surface Modification Thresholds on Diverse Metals
K. Rani, N. Ozaki, H. Nakamura, K. Hashimoto, R. Kodama, S. Takai and H. Nagatomo
●Yokohama,Japan
●Poter
●2026.4.23
International Conference on High Energy Density Laboratory Astrophysics and High Energy Density Science 2026 (HEDLA/HEDS2026)
Compression Properties of Polyamide6(C6H11ON) under Laser-Driven Shock Compression and Conditions for Diamond Formation in Ice Giant Interiors
R. Furukawa, K. Taketoshi, A. Oyama, A. Amouretti, R. Kodama, K. Miyanishi, D. Murayama, H. Nakamura, C. Nakatsuji, M. Yabashi, T. Yabuuchi, N. Yamagata, T. Sano, Y. Seto and N. Ozaki
●Yokohama,Japan
●Poter
●2026.4.23
International Conference on High Energy Density Laboratory Astrophysics and High Energy Density Science 2026 (HEDLA/HEDS2026)
In-situ XRD measurements of laser shock compressed CHO materials and an investigation of diamond formation conditions
K. Taketoshi, D. Murayama, A. Amouretti, R. Furukawa, R. Kodama, K. Miyanishi, H. Nakamura, C. Nakatsuji, T. Sano, Y. Seto, M. Yabashi, T. Yabuuchi, N. Yamagata and N. Ozaki
●Yokohama,Japan
●Poter
●2026.4.23
International Conference on High Energy Density Laboratory Astrophysics and High Energy Density Science 2026 (HEDLA/HEDS2026)
The Hugoniot temperature of nanopolycrystalline diamond
N. Yamagata, Y. Kumagai, S. Yamamoto, T. Irifune, R. Kodama, C. Nakatsuji, H. Nakamura, T. Sano, K. Taketoshi and N. Ozaki
●Yokohama,Japan
●Poter
●2026.4.23