nkysdb: なかよし論文データベース
山内 初希 様の 共著関連データベース
+(A list of literatures under single or joint authorship with "山内 初希")
共著回数と共著者名 (a list of the joint author(s))
13: 山内 初希
11: 武井 康子
1: Benjamin Holtzman, Christine McCarthy, David Goldsby, Travis Hager, 柄澤 史也, 櫻庭 中, 角田 明博
発行年とタイトル (Title and year of the issue(s))
2014: アナログ物質を用いた多結晶体の非弾性実験 融点近傍における振る舞い (SIT38 17)
Experimental study of anelasticity of a polycrystalline material near the melting temperature (SIT38 17)
2014: マグマに満たされたダイクの流れ誘起振動が引き起こす火山微動(SVC50 12)
Volcanic tremor caused by flow induced oscillation of a magma filled dike (SVC50 12)
2014: 多結晶体の非弾性特性の実験的研究 上部マントル地震波構造の定量的解釈を目指して (SIT41 12)
Experimental study of anelasticity of a polycrystalline material for seismological application (SIT41 12)
2015: 多結晶体の非弾性の実験的研究と上部マントル地震波構造への応用(SIT04 02)
Experimental study on polycrystal anelasticty with implications for upper mantle seismic structure (SIT04 02)
2016: 融点直下から部分溶融に至るまでの多結晶体の非弾性の温度依存性 メカニズムの解明と地震学への応用を目指して (SCG58 15)
Temperature dependence of polycrystal anelasticity at near solidus temperatures: toward clarification of the underlying mechanism and applications to seismology (SCG58 15)
2016: 融点近傍における多結晶体の弾性・非弾性・粘性(SCG59 14)
Elasticity, anelasticity, and viscosity of a polycrystalline material at near solidus temperatures (SCG59 14)
2017: Effects of temperature, melt, and volatile on polycrystal anelasticity: Toward the application to subduction zone (SIT26 P06)
2017: Experimental study of polycrystal anelasticity at near solidus temperatures and its seismological applications (SIT28 04)
2017: 多結晶体の非弾性特性から推定されるアセノスフェアの成因(SIT25 12)
Origin of asthenosphere inferred from polycrystal anelasticity (SIT25 12)
2018: Application of a new anelasticity model to the seismic discontinuity at the lithosphere asthenosphere boundary (SIT28 07)
2019: 粒界の熱力学モデルによる2成分共融系の粒界プレメルティング(SCG54 P09)
Thermodynamic approach to grain boundary premelting in a binary eutectic system (SCG54 P09)
2020: Seismic discontinuity at lithosphere asthenosphere boundary predicted from laboratory based anelasticity model (SIT27 08)
2022: Experimental approach using ice polycrystals to understand the effect of dislocations on anelasticity (SCG49 07)