2021年第82回応用物理学会秋季学術講演会

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一般セッション(口頭講演)

22 合同セッションM 「フォノンエンジニアリング」 » 22.1 合同セッションM 「フォノンエンジニアリング」

[13a-N106-1~5] 22.1 合同セッションM 「フォノンエンジニアリング」

2021年9月13日(月) 10:30 〜 11:45 N106 (口頭)

渡邉 孝信(早大)

10:45 〜 11:00

[13a-N106-2] Acoustic vibrational wave transmissions at metal-superlattice interfaces

HaiJun Cho1、Yuzhang Wu2、Jiajun Qi3、Yuna Kim1、Hiromichi Ohta1、Matsuda Osamu4 (1.RIES-Hokkaido Univ.、2.IST-Hokkaido Univ.、3.Life-Hokkaido Univ.、4.Eng-Hokkaido Univ.)

キーワード:Acoustic transmissions, Superlattices

Versatility observed from the vibrational properties of superlattices contributed significantly to our current understanding on the heat conduction in material systems. However, the research interest of scientific community is mostly in the intrinsic heat transport properties of superlattices, and phonon transportation across the interface between superlattices and other materials is poorly understood to date. In this study, we performed pump-probe measurements on a thin Cr transducer on InGaO3(ZnO)m (IGZOm) superlattice films to demonstrate how phonon engineering in superlattice can be used to control the transmission of acoustic energy at metal-superlattice interfaces. The transient reflectivity from Cr-IGZOm heterostructures showed noticeable changes in the number of acoustic oscillations within the Cr transducer upon changing the superlattice period (dSL), indicating changes in the acoustic wave transmission probability from Cr to IGZOm. We address the fundamental physics behind this phenomenon with the existing theoretical models and discuss its implications on the transmission mechanism of acoustic phonons at metal-insulator interfaces.