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1
Modeling Thermal Effects for 28-nm Node Fully Depleted SOI Devices Under Cryogenic Temperatures
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Modeling Thermal Effects for 28-nm Node Fully Depleted SOI Devices Under Cryogenic Temperatures

Wang, Ziyi ; Povolotskyi, Michael ; Vasileska, Dragica

IEEE transactions on electron devices, 2024-04, p.1-7 [Periódico revisado por pares]

IEEE

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2
Highly tailorable thermomechanical properties of nanograined silicon: Importance of grain size and grain anisotropy
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Highly tailorable thermomechanical properties of nanograined silicon: Importance of grain size and grain anisotropy

Cao, Jiahui ; Wang, Han ; Ferrer-Argemi, Laia ; Cao, Penghui ; Lee, Jaeho

Applied physics letters, 2024-02, Vol.124 (8) [Periódico revisado por pares]

Melville: American Institute of Physics

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3
Regulating interfacial thermal conductance with commensurate-incommensurate transitions at atomic-scale silicon/silicon interfaces
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Regulating interfacial thermal conductance with commensurate-incommensurate transitions at atomic-scale silicon/silicon interfaces

Dong, Yun ; Ding, Yusong ; Tao, Yi ; Lian, Fangming ; Hui, Weibin

Nanoscale, 2024-02, Vol.16 (7), p.3738-3748 [Periódico revisado por pares]

England: Royal Society of Chemistry

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4
On the importance of Akhiezer damping to thermal conductivity in silicon at elevated temperatures above 300 K
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On the importance of Akhiezer damping to thermal conductivity in silicon at elevated temperatures above 300 K

Jin, Jae Sik

Journal of applied physics, 2024-01, Vol.135 (4) [Periódico revisado por pares]

Melville: American Institute of Physics

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5
High thermoelectric figure of merit in p-type Mg3Si2Te6: role of multi-valley bands and high anharmonicity
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High thermoelectric figure of merit in p-type Mg3Si2Te6: role of multi-valley bands and high anharmonicity

Pandey, Tribhuwan ; Peeters, François M ; Milošević, Milorad V

Journal of materials chemistry. C, Materials for optical and electronic devices, 2023-07, Vol.11 (33), p.11185-11194 [Periódico revisado por pares]

Cambridge: Royal Society of Chemistry

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6
A Thermal Model of Low-Temperature Light Detectors for Neutrinoless Double Beta Decay Experiments
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A Thermal Model of Low-Temperature Light Detectors for Neutrinoless Double Beta Decay Experiments

Kim, S. G. ; Jeon, J. A. ; Woo, K. R. ; Kim, S. R. ; Kwon, D. H. ; Lee, H. J. ; Kim, H. B. ; Lee, Y. C. ; Kim, M. B. ; Lee, M. K. ; Kim, Y. H.

Journal of low temperature physics, 2023-06, Vol.211 (5-6), p.272-280 [Periódico revisado por pares]

New York: Springer US

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7
Effect of morphology on the phonon thermal conductivity in Si/Ge superlattice nanowires
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Effect of morphology on the phonon thermal conductivity in Si/Ge superlattice nanowires

Khaliava, Ivan I. ; Khamets, Alexander L. ; Safronov, Igor V. ; Filonov, Andrew B. ; Suemasu, Takashi ; Migas, Dmitri B.

Japanese Journal of Applied Physics, 2023-05, Vol.62 (SD), p.SD1013 [Periódico revisado por pares]

Tokyo: IOP Publishing

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8
Thermal transport properties of nanoporous silicon with significant specific surface area
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Thermal transport properties of nanoporous silicon with significant specific surface area

Isaiev, Mykola ; Mankovska, Yuliia ; Kuryliuk, Vasyl ; Lacroix, David

Applied physics letters, 2023-04, Vol.122 (17) [Periódico revisado por pares]

Melville: American Institute of Physics

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9
The Tortuosity Effect on the Thermal Conductivity of Si Nanowires
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The Tortuosity Effect on the Thermal Conductivity of Si Nanowires

Hong, Hao-Jhan ; Huang, Mei-Jiau

Nanoscale and microscale thermophysical engineering, 2023-04, Vol.27 (2), p.110-124 [Periódico revisado por pares]

Abingdon: Taylor & Francis

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10
Impact of nanopillars on phonon dispersion and thermal conductivity of silicon membranes
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Impact of nanopillars on phonon dispersion and thermal conductivity of silicon membranes

Anufriev, Roman ; Ohori, Daisuke ; Wu, Yunhui ; Yanagisawa, Ryoto ; Jalabert, Laurent ; Samukawa, Seiji ; Nomura, Masahiro

Nanoscale, 2023-02, Vol.15 (5), p.2248-2253 [Periódico revisado por pares]

England: Royal Society of Chemistry

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