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K. E. Goodson and Y. S. Ju. Heat conduction in novel electronic films. Annu. Rev. Mater. Sci, 29:261, 1999.
CrossRef
G. Chen. Micro- and nano-scale thermal phenomena in photonic devices. Annu. Rev. Heat. Transf., 7:69, 1996.
T. Tritt. Recent Trends in Thermoelectric Materials Research, Semiconductors and Semimetals Series. Academic press, San Diego, 2001.
S. L. Finberg K. Young-Waithe H. K. H. Choy M. M. Masaki R. S. DiMatteo, P. Greiff and C. G. Fonstad. Enhanced photogeneration of carriers in a semiconductor via coupling across a nonisothermal nanoscale vacuum gap. Appl. Phys. lett., 79: 1894, 2001.
CrossRef
U. Drechsler W. Haberle-M. Lutwyche P. Vettiger H. J. Mamin B. W. Choi G. Binning, M. Despont and T. W. Kenny. Ultrahigh-density atomic force microscopy data storage with erase capability. Appl. Phys. lett., 74: 1329, 1999.
CrossRef
P. Sverdrup R. Dutton E. Pop, K. Banerjee and K. E. Goodson. Localized heating effects and scaling of sub-0.18 micron CMOS devices. IEDM Tech. Dig., 2001.
C. H. Wann Y. Taur and D. J. Frank. 25 nm CMOS design considerations. International Electron Devices Meeting, 1080: 789, 1998.
H. J. Goldsmid. Electronic Refrigeration. Pion, 1986.
J. Sharp G. S. Nolas and H. J. Goldsmid. Thermoelectrics: basic principles and new materials developments. Springer, 2001.
D. M. Rowe. CRC handbook of thermoelectrics. 1995.
F. J. DiSalvo. Thermoelectric cooling and power generation. Science, 285: 703-706, 1999.
CrossRef
H. J. Goldsmid. Thermoelectric Refrigeration. Plenum Press, 1964.
A. F. Ioffe. Semiconductor Thermoelements and Thermoelectric Cooling. Infosearch, London, 1957.
R. Venkatasubramanian, E. S. T. Colpitts, and B. O'Quinn. Thin-film thermoelectric devices with high room-temperature figures of merit. Nature, 413: 597-602, 2001.
CrossRef
T. C. Harman, P. J. Taylor, M. P. Walsh, and B. E. LaForge. Quantum dot superlattice thermoelectric materials and devices. Science, 297: 2229-2232, 2002.
CrossRef
G. Chen, D. Borca-Tasciuc, and R. G. Yang. Nanoscale heat transfer. Encyclopedia of Nanoscience and Nanotechnology, 17: 429-459, 2004.
C. L. Tien, A. Majumdar, and F. Gerner. Microscale Energy Transport. Taylor and Francis, New York, 1997.
G. Chen. Nanoscale Energy Transport and Conversion: A Parallel Treatment of Elections, Molecules, Phonons, and Photons. Oxford University press, New York, 2005.
J. M. Ziman. Electrons and Phonons. Oxford University press, London, UK, 1960.
A. A. Joshi and A. Majumdar. Transient Ballistic and Diffusive Phonon Heat Transport in Thin Films. Journal of Applied Physics, 74: 31-39, 1993.
CrossRef
G. Chen. Size and interface effects on thermal conductivity of superlattices and periodic thin-film structures. J. Heat Transfer, 119: 220-229, 1997.
CrossRef
A. Pattamatta and C. K. Madnia. Modeling Thermal Transport in Nanoparticle Composites. Journal of Thermophysics and Heat Transfer, 23: 608-615, 2009.
CrossRef
N. W. Ashcroft and N. D. Mermin. Solid state physics. Holt Rinehart and Winston, New York, 1976.
K. Fushinobu, L. M. Phinney, Y. Kurosaki, and C. L. Tien. Optimization of Laser Parameters for Ultrashort-Pulse Laser Recovery of Stiction-Failed Microstructures. Numerical Heat Transfer, Part A, 36: 345-357, 1999.
CrossRef
A. Majumdar, K. Fushinobu, and K. Hijikata. Effect of Gate Voltage on Hot-Electron and Hot-Phonon Interaction and Transport in a Submicrometer Transistor. J. Appl. Phys., 77: 6686-6694, 1995.
CrossRef
O. Madelung. Semiconductors: Data Handbook, 3rd Edition. Springer, 2004.
E. T. Swartz and R. O. Pohl. Thermal boundary resistance. Review. Modern Physics, 61: 605-668, 1989.
CrossRef
T. Klitsner, J. E. Van Cleve, H. E. Fischer, and R. O. Pohl. Phonon radiative heat transfer and surface scattering. Physical Review B, 38: 7576-7594, 1988.
CrossRef
W. A. Little. The transport of heat between dissimilar solids at low temperatures. Canadian Journal of Physics, 37: 334-349, 1959.
CrossRef
Zhuomin Zhang. Nano/Micro scale Heat Transfer. McGraw-Hill, New York, 2007.
A. Pattamatta and C. K. Madnia. Modeling Heat Transfer in Bi2Te3 - Sb2Te3 Nanostructures. International Journal of Heat and Mass Transfer, 52: 860-869, 2009.
CrossRef
B. Cockburn, G. E. Karniadakis, and C.-W. Shu. Discontinuous Galerkin Methods: Theory, Computation and Applications. Springer-Verlag, Berlin, 2000.
B. Cockburn and C.-W. Shu. Runge-Kutta Discontinuous Galerkin Methods for Convection-Dominated Problems. J. Scientific Computing, 16(3): 173-261, 2001.
CrossRef
A. Pattamatta and C. K. Madnia. A Comparative Study of Two-temperature and Boltzmann Transport Models for Electron-Phonon Non-equilibrium. Numerical Heat Transfer, Part A, 55: 429-459, 2009.
W. Gropp, E. Lusk, and A. Skjellum. Using MPI Portable Parallel Programming with the Message-Passing Interface. The MIT Press, Cambridge, Massachusetts, 1997.
T. Zeng and G. Chen. Phonon heat conduction in thin films: Impacts of thermal boundary resistance and internal heat generation. J. Heat Transfer, 123: 340-347, 2001.
CrossRef
R. Venkatasubramanian. Lattice thermal conductivity reduction and phonon localizationlike behavior in superlattice structures. Physical Review B, 61: 3091-3097, 2000.
CrossRef
G. Chen. Size and interface effects on thermal conductivity of superlattices and periodic thin-film structures. J. Heat Transfer, 119: 220-229, 1997.
CrossRef
R. Yang and G. Chen. Thermal conductivity modeling of periodic two-dimensional nanocomposites. Physical Review B, 69: 195316-1-10, 2004.
S. V. J. Narumanchi, J. Y. Murthy, and C. H. Amon. Comparison of different phonon transport models for predicting heat conduction in silicon-on-insulator transistors. Journal of Heat Transfer, 127: 713-723, 2005.
CrossRef
T. Q. Qiu and C. L. Tien. Heat Transfer Mechanisms During Short-Pulse Laser Heating of Metals. ASME J. Heat Transfer, 115: 835-841, 1993.
CrossRef
D. Agassi. Phenomenological Model for Picosecond Pulse Laser Annealing of Semiconductors,. Journal of Applied Physics, 55: 4376-4383, 1984.
CrossRef
G. Chen. Thermal Conductivity and Ballistic Transport in the Cross Plane Direction of Superlattices. Physical Review B, 57: 14 958-14 973, 1998.
CrossRef
H. M. van Driel. Kinetics of High-Density Plasmas Generated in Si by 1.06- and 0.53-μm Picosecond Laser Pulses. Physical Review B, 35: 8166-8176, 1987.
CrossRef
J. R. Meyer, M. R. Kruer, and F. J. Bartoli. Optical Heating in Semiconductors: Laser Damage in Ge, Si, Insb and Gaas. Journal of Applied Physics, 51: 5513-5522, 1980.
CrossRef
S-H. Lee, J-S. Lee, S. Park, and Y-K. Choi. Numerical Analysis on Heat Transfer Characteristics of a Silicon Film Irradiated by Pico-to Femtosecond Pulse Lasers. Numerical Heat Transfer, Part A, 44: 833-850, 2003.
CrossRef
J. K. Chen, D. Y. Tzou, and J. E. Beraun. Numerical investigation of ultrashort laser damage in semiconductors. International Journal of Heat and Mass Transfer, 48: 501-509, 2005.
CrossRef
A. Pattamatta and C. K. Madnia. Modeling Electron-Phonon Non-equilibrium in Gold Films using Boltzmann Transport Model. Journal of Heat Transfer, 131: 082401-1-082401-8, 2009.
R. F. Pierret. Modular Series on Solid State Devices, Volume VI: Advanced Semiconductor Fundamentals. Prentice Hall, New jersey, 2003.