Phonon scattering (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Phonon scattering" in English language version.

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arxiv.org

  • Mingo, N (2003). "Calculation of nanowire thermal conductivity using complete phonon dispersion relations". Physical Review B. 68 (11): 113308. arXiv:cond-mat/0308587. Bibcode:2003PhRvB..68k3308M. doi:10.1103/PhysRevB.68.113308. S2CID 118984828.
  • Feng, Tianli; Ruan, Xiulin (2016). "Quantum mechanical prediction of four-phonon scattering rates and reduced thermal conductivity of solids". Physical Review B. 93 (4): 045202. arXiv:1510.00706. Bibcode:2016PhRvB..96p5202F. doi:10.1103/PhysRevB.93.045202. S2CID 16015465.
  • Jiang, Puqing; Lindsay, Lucas (2018). "Interfacial phonon scattering and transmission loss in > 1 um thick silicon-on-insulator thin films". Phys. Rev. B. 97 (19): 195308. arXiv:1712.05756. Bibcode:2018PhRvB..97s5308J. doi:10.1103/PhysRevB.97.195308. S2CID 118956593.
  • Maznev, A. (2015). "Boundary scattering of phonons: Specularity of a randomly rough surface in the small-perturbation limit". Phys. Rev. B. 91 (13): 134306. arXiv:1411.1721. Bibcode:2015PhRvB..91m4306M. doi:10.1103/PhysRevB.91.134306. S2CID 54583870.

doi.org

  • Mingo, N (2003). "Calculation of nanowire thermal conductivity using complete phonon dispersion relations". Physical Review B. 68 (11): 113308. arXiv:cond-mat/0308587. Bibcode:2003PhRvB..68k3308M. doi:10.1103/PhysRevB.68.113308. S2CID 118984828.
  • Zou, Jie; Balandin, Alexander (2001). "Phonon heat conduction in a semiconductor nanowire" (PDF). Journal of Applied Physics. 89 (5): 2932. Bibcode:2001JAP....89.2932Z. doi:10.1063/1.1345515. Archived from the original (PDF) on 2010-06-18.
  • Feng, Tianli; Ruan, Xiulin (2016). "Quantum mechanical prediction of four-phonon scattering rates and reduced thermal conductivity of solids". Physical Review B. 93 (4): 045202. arXiv:1510.00706. Bibcode:2016PhRvB..96p5202F. doi:10.1103/PhysRevB.93.045202. S2CID 16015465.
  • Feng, Tianli; Lindsay, Lucas; Ruan, Xiulin (2017). "Four-phonon scattering significantly reduces intrinsic thermal conductivity of solids". Physical Review B. 96 (16): 161201. Bibcode:2017PhRvB..96p1201F. doi:10.1103/PhysRevB.96.161201.
  • Jiang, Puqing; Lindsay, Lucas (2018). "Interfacial phonon scattering and transmission loss in > 1 um thick silicon-on-insulator thin films". Phys. Rev. B. 97 (19): 195308. arXiv:1712.05756. Bibcode:2018PhRvB..97s5308J. doi:10.1103/PhysRevB.97.195308. S2CID 118956593.
  • Maznev, A. (2015). "Boundary scattering of phonons: Specularity of a randomly rough surface in the small-perturbation limit". Phys. Rev. B. 91 (13): 134306. arXiv:1411.1721. Bibcode:2015PhRvB..91m4306M. doi:10.1103/PhysRevB.91.134306. S2CID 54583870.
  • Casimir, H.B.G (1938). "Note on the Conduction of Heat in Crystals". Physica. 5 (6): 495–500. Bibcode:1938Phy.....5..495C. doi:10.1016/S0031-8914(38)80162-2.

harvard.edu

ui.adsabs.harvard.edu

  • Mingo, N (2003). "Calculation of nanowire thermal conductivity using complete phonon dispersion relations". Physical Review B. 68 (11): 113308. arXiv:cond-mat/0308587. Bibcode:2003PhRvB..68k3308M. doi:10.1103/PhysRevB.68.113308. S2CID 118984828.
  • Zou, Jie; Balandin, Alexander (2001). "Phonon heat conduction in a semiconductor nanowire" (PDF). Journal of Applied Physics. 89 (5): 2932. Bibcode:2001JAP....89.2932Z. doi:10.1063/1.1345515. Archived from the original (PDF) on 2010-06-18.
  • Feng, Tianli; Ruan, Xiulin (2016). "Quantum mechanical prediction of four-phonon scattering rates and reduced thermal conductivity of solids". Physical Review B. 93 (4): 045202. arXiv:1510.00706. Bibcode:2016PhRvB..96p5202F. doi:10.1103/PhysRevB.93.045202. S2CID 16015465.
  • Feng, Tianli; Lindsay, Lucas; Ruan, Xiulin (2017). "Four-phonon scattering significantly reduces intrinsic thermal conductivity of solids". Physical Review B. 96 (16): 161201. Bibcode:2017PhRvB..96p1201F. doi:10.1103/PhysRevB.96.161201.
  • Jiang, Puqing; Lindsay, Lucas (2018). "Interfacial phonon scattering and transmission loss in > 1 um thick silicon-on-insulator thin films". Phys. Rev. B. 97 (19): 195308. arXiv:1712.05756. Bibcode:2018PhRvB..97s5308J. doi:10.1103/PhysRevB.97.195308. S2CID 118956593.
  • Maznev, A. (2015). "Boundary scattering of phonons: Specularity of a randomly rough surface in the small-perturbation limit". Phys. Rev. B. 91 (13): 134306. arXiv:1411.1721. Bibcode:2015PhRvB..91m4306M. doi:10.1103/PhysRevB.91.134306. S2CID 54583870.
  • Casimir, H.B.G (1938). "Note on the Conduction of Heat in Crystals". Physica. 5 (6): 495–500. Bibcode:1938Phy.....5..495C. doi:10.1016/S0031-8914(38)80162-2.

semanticscholar.org

api.semanticscholar.org

  • Mingo, N (2003). "Calculation of nanowire thermal conductivity using complete phonon dispersion relations". Physical Review B. 68 (11): 113308. arXiv:cond-mat/0308587. Bibcode:2003PhRvB..68k3308M. doi:10.1103/PhysRevB.68.113308. S2CID 118984828.
  • Feng, Tianli; Ruan, Xiulin (2016). "Quantum mechanical prediction of four-phonon scattering rates and reduced thermal conductivity of solids". Physical Review B. 93 (4): 045202. arXiv:1510.00706. Bibcode:2016PhRvB..96p5202F. doi:10.1103/PhysRevB.93.045202. S2CID 16015465.
  • Jiang, Puqing; Lindsay, Lucas (2018). "Interfacial phonon scattering and transmission loss in > 1 um thick silicon-on-insulator thin films". Phys. Rev. B. 97 (19): 195308. arXiv:1712.05756. Bibcode:2018PhRvB..97s5308J. doi:10.1103/PhysRevB.97.195308. S2CID 118956593.
  • Maznev, A. (2015). "Boundary scattering of phonons: Specularity of a randomly rough surface in the small-perturbation limit". Phys. Rev. B. 91 (13): 134306. arXiv:1411.1721. Bibcode:2015PhRvB..91m4306M. doi:10.1103/PhysRevB.91.134306. S2CID 54583870.

ucr.edu

ndl.ee.ucr.edu

web.archive.org

zenodo.org

  • Mingo, N (2003). "Calculation of nanowire thermal conductivity using complete phonon dispersion relations". Physical Review B. 68 (11): 113308. arXiv:cond-mat/0308587. Bibcode:2003PhRvB..68k3308M. doi:10.1103/PhysRevB.68.113308. S2CID 118984828.