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1
Estimation of phonon relaxation time for silicon by means of using the velocity autocorrelation function of atoms in molecular dynamics
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Estimation of phonon relaxation time for silicon by means of using the velocity autocorrelation function of atoms in molecular dynamics

Andriyevsky, B. ; Maliński, M. ; Buryło, Ł. ; Stadnyk, V.Y. ; Romanyuk, M.O. ; Piekarski, J. ; Andriyevska, L.

Bulletin of the Polish Academy of Sciences. Technical sciences, 2019-01, Vol.67 (3), p.651-656 [Peer Reviewed Journal]

Warsaw: Polish Academy of Sciences

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2
Multiwavelength metasurfaces through spatial multiplexing
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Multiwavelength metasurfaces through spatial multiplexing

Arbabi, Ehsan ; Arbabi, Amir ; Kamali, Seyedeh Mahsa ; Horie, Yu ; Faraon, Andrei

Scientific reports, 2016-09, Vol.6 (1), p.32803-32803, Article 32803 [Peer Reviewed Journal]

England: Nature Publishing Group

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3
High thermal conductivity in wafer-scale cubic silicon carbide crystals
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High thermal conductivity in wafer-scale cubic silicon carbide crystals

Cheng, Zhe ; Liang, Jianbo ; Kawamura, Keisuke ; Zhou, Hao ; Asamura, Hidetoshi ; Uratani, Hiroki ; Tiwari, Janak ; Graham, Samuel ; Ohno, Yutaka ; Nagai, Yasuyoshi ; Feng, Tianli ; Shigekawa, Naoteru ; Cahill, David G

Nature communications, 2022-11, Vol.13 (1), p.7201-7201, Article 7201 [Peer Reviewed Journal]

London: Nature Publishing Group

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4
Thermal boundary resistance in semiconductors by non-equilibrium thermodynamics
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Thermal boundary resistance in semiconductors by non-equilibrium thermodynamics

Dettori, R. ; Melis, C. ; Cartoixà, X. ; Rurali, R. ; Colombo, L.

Advances in physics: X, 2016-03, Vol.1 (2), p.246-261 [Peer Reviewed Journal]

Abingdon: Taylor & Francis

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5
How dopants limit the ultrahigh thermal conductivity of boron arsenide: a first principles study
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How dopants limit the ultrahigh thermal conductivity of boron arsenide: a first principles study

Fava, Mauro ; Protik, Nakib Haider ; Li, Chunhua ; Ravichandran, Navaneetha Krishnan ; Carrete, Jesús ; van Roekeghem, Ambroise ; Madsen, Georg K. H. ; Mingo, Natalio ; Broido, David

npj computational materials, 2021-04, Vol.7 (1), p.1-7, Article 54 [Peer Reviewed Journal]

London: Nature Publishing Group

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6
Thermal Properties of Porous Silicon Nanomaterials
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Thermal Properties of Porous Silicon Nanomaterials

Fedorov, Aleksandr S ; Teplinskaia, Anastasiia S

Materials, 2022-12, Vol.15 (23), p.8678 [Peer Reviewed Journal]

Switzerland: MDPI AG

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7
Hydrostatic pressure effects on the processes of lattice thermal conductivity of bulk Silicon and nanowires
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Hydrostatic pressure effects on the processes of lattice thermal conductivity of bulk Silicon and nanowires

Hamarashid, M M ; Omar, M S

Bulletin of materials science, 2021-09, Vol.44 (3), p.201, Article 201 [Peer Reviewed Journal]

Bangalore: Indian Academy of Sciences

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8
Phonons and Thermal Transport in Si/SiO2 Multishell Nanotubes: Atomistic Study
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Phonons and Thermal Transport in Si/SiO2 Multishell Nanotubes: Atomistic Study

Isacova, Calina ; Cocemasov, Alexandr ; Nika, Denis L. ; Fomin, Vladimir M.

Applied sciences, 2021-04, Vol.11 (8), p.3419 [Peer Reviewed Journal]

Basel: MDPI AG

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9
How Hydrodynamic Phonon Transport Determines the Convergence of Thermal Conductivity in Two-Dimensional Materials
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How Hydrodynamic Phonon Transport Determines the Convergence of Thermal Conductivity in Two-Dimensional Materials

Jiang, Jianhui ; Lu, Shuang ; Ouyang, Yulou ; Chen, Jie

Nanomaterials (Basel, Switzerland), 2022-08, Vol.12 (16), p.2854 [Peer Reviewed Journal]

Basel: MDPI AG

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10
Designing Nanostructures for Phonon Transport via Bayesian Optimization
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Designing Nanostructures for Phonon Transport via Bayesian Optimization

Ju, Shenghong ; Shiga, Takuma ; Feng, Lei ; Hou, Zhufeng ; Tsuda, Koji ; Shiomi, Junichiro

Physical review. X, 2017-05, Vol.7 (2), p.021024, Article 021024 [Peer Reviewed Journal]

College Park: American Physical Society

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