CLAMPED NANOWIRE THERMAL CONDUCTIVITY BASED ON PHONON TRANSPORT EQUATION
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Begellhouse
Reference18 articles.
1. S. G. Volz and G. Chen. Molecular dynamics simulation of thermal conductivity of silicon nanowires. Applied Physics Letters, 75(14): 2056-2058, 1999.
2. G. Chen. Size and interface effects on thermal conductivity of superlattices and periodic thin-film structures. J. Heat Transfer, 119: 220-229, 1997.
3. G. Chen. Thermal conductivity and ballistic phonon transport in cross-plane direction of superlattices, Physical Review B, 57:14858-14973, 1998.
4. A. Khitun, A. Balandin and K. L. Wang. Modification of the thermal conductivity in silicon quantum wires due to spatial confinement of acoustic phonons. Superlattices and Microstructures, 26(3): 181-193, 1999.
5. A. Balandin and K. L. Wang. Significant decrease of the lattice thermal conductivity due to phonon confinement in a free-standing semiconductor quantum well. Physical Review B, 58(3): 1544-1549, 1998.
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