Bhalla Pankaj, Das Nabyendu
Beijing Computational Science Research Center, Beijing, 100193, People's Republic of China.
Department of Physics, The LNM-Institute of Information Technology, Jaipur 302031, India.
J Phys Condens Matter. 2021 Jul 1;33(34). doi: 10.1088/1361-648X/ac08b7.
Motivated by recent experimental findings, we study the contribution of a quantum critical optical phonon branch to the thermal conductivity of a paraelectric system. We consider the proximity of the optical phonon branch to transverse acoustic phonon branch and calculate its contribution to the thermal conductivity within the Kubo formalism. We find a low temperature power law dependence of the thermal conductivity as, with 1 << 2, (lower thanbehavior) due to optical phonons near the quantum critical point. This result is in accord with the experimental findings and indicates the importance of quantum fluctuations in the thermal conduction in these materials.
受近期实验结果的启发,我们研究了量子临界光学声子分支对顺电系统热导率的贡献。我们考虑了光学声子分支与横向声学声子分支的接近程度,并在久保形式理论内计算了其对热导率的贡献。我们发现,由于量子临界点附近的光学声子,热导率呈现低温幂律依赖关系,即 ,其中 1 << 2(低于行为)。这一结果与实验结果相符,并表明了量子涨落在这些材料热传导中的重要性。