Title of article :
Lattice thermal conductivity of MgSiO3 perovskite and post-perovskite at the core–mantle boundary
Author/Authors :
Ohta، نويسنده , , Kenji and Yagi، نويسنده , , Takashi and Taketoshi، نويسنده , , Naoyuki and Hirose، نويسنده , , Kei and Komabayashi، نويسنده , , Tetsuya and Baba، نويسنده , , Tetsuya and Ohishi، نويسنده , , Yasuo and Hernlund، نويسنده , , John، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Abstract :
Thermal conductivity is essential for controlling the rate of core heat loss and long-term thermal evolution of the Earth, but it has been poorly constrained at the high pressures of Earthʹs lowermost mantle. We measured the lattice component of thermal diffusivity, heat transport by scattering of phonons, of both MgSiO3 perovskite (Pv) and post-perovskite (PPv) at high pressures of up to 144 GPa and at room temperature. Lattice thermal conductivity of Pv-dominant lowermost mantle assemblage obtained in this study is about 11 W/m/K, while PPv-bearing rocks exhibit ∼60% higher conductivity. Since such Pv value is comparable to the conventionally assumed lowermost mantle conductivity, our findings do not significantly alter but support the recent notion of high core–mantle boundary heat flow along with a young inner core and high temperatures in the early deep Earth.
Keywords :
Post-perovskite , core–mantle boundary heat flow , thermal conductivity , thermal diffusivity , Perovskite
Journal title :
Earth and Planetary Science Letters
Journal title :
Earth and Planetary Science Letters