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Keywords: metallic thin films
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Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. April 2012, 134(4): 042402.
Published Online: February 13, 2012
... )]. interface thermal resistance ultrafast laser thermo-reflectance two-temperature model electron–phonon coupling electron-phonon interactions gold heat transfer laser materials processing metallic thin films silicon thermal conductivity thermal resistance thermoreflectance 18 05...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. April 2011, 133(4): 044505.
Published Online: January 14, 2011
... modeling and elucidates the importance of the use of a proper thermoreflectance model for thermophysical property determination in pump-probe experiments. 26 03 2010 22 06 2010 14 01 2011 14 01 2011 electron emission Fermi level gold metallic thin films thermoreflectance...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. March 2011, 133(3): 031003.
Published Online: November 15, 2010
... 2010 gold laser beam effects melting metallic thin films phase change materials solidification vaporisation Because of its unique characteristics in material processing, fast fabrication, and diagnostic, the interaction between ultrashort pulse lasers, especially femtosecond lasers...
Journal Articles
Journal Articles
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. November 2009, 131(11): 111301.
Published Online: August 19, 2009
... heating laser materials processing metallic thin films dual phase lag non-Fourier heat conduction short-pulse laser heating reflectivity change Short-pulse laser heating processes have made tremendous impacts in microelectronics and material processing, such as laser patterning...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. August 2009, 131(8): 082401.
Published Online: June 5, 2009
... time electron-phonon interactions finite element analysis Galerkin method gold laser beam effects melting metallic thin films Runge-Kutta methods specific heat The physics of short-pulse laser heating of metallic films is very complex and has been the subject of many investigations ( 1...
Journal Articles
Publisher: ASME
Article Type: Micro/Nanoscale Heat Transfer—Part Ii
J. Heat Mass Transfer. April 2009, 131(4): 043208.
Published Online: February 20, 2009
... – 1242 . 15 06 2008 10 09 2008 20 02 2009 ballistic transport Boltzmann equation electron-phonon interactions metallic thin films plasma heating by laser plasma production by laser plasma transport processes electron-phonon coupling ultrashort pulsed laser heating...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. August 2008, 130(8): 082403.
Published Online: May 30, 2008
... ,” Jpn. J. Appl. Phys. 0021-4922 10.1143/JJAP.9.1326 , 9 , pp. 1326 – 1329 . Gurrum , S. P. , Joshi , Y. K. , King , W. P. , and Ramakrishna , K. , 2004 , “ Numerical Simulation of Electron Transport Through Constriction in a Metallic Thin Film ,” IEEE Electron Device Lett...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. June 2008, 130(6): 062401.
Published Online: April 23, 2008
... laser materials processing melting metallic thin films nucleation solidification surface energy thermal conductivity heat transfer laser melting solidification microscale Microscale heat transfer has drawn the attention of many researchers due to its importance in many advanced...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. November 2007, 129(11): 1546–1553.
Published Online: July 21, 2006
... and rectangular trenches. However, all the above studies focus on geometries which are simple enough to be amenable to analytical methods. physical vapor deposition free molecular flow radiation-molecular flow analogy finite element analysis chromium metallic thin films vacuum deposited...
Journal Articles
Publisher: ASME
Article Type: Technical Papers
J. Heat Mass Transfer. January 2007, 129(1): 37–43.
Published Online: June 16, 2006
... their potential as an efficient near-field light source for materials processing at the nanoscale. 23 01 2006 16 06 2006 nanotechnology micro-optics alumina metallic thin films optical films near-field scanning optical microscopy light polarisation finite difference time-domain analysis...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. September 2006, 128(9): 919–925.
Published Online: March 1, 2006
... temperature ( 1 ), its impact is most pronounced in cryoelectronic devices, such as superconducting Josephson junctions. nanoscale heat transfer thermal interface resistance Josephson junctions nanolaminates thermal resistance metallic thin films dielectric thin films laminates electron...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. February 2006, 128(2): 113–120.
Published Online: June 21, 2005
... effect (GMTR) of 25% in the Cu ∕ CoFe multilayer structure. 10 06 2004 21 06 2005 copper disc drives hard discs cobalt alloys iron alloys magnetic multilayers ferromagnetic materials metallic thin films giant magnetoresistance electrical resistivity magnetisation electrical...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. October 2005, 127(10): 1167–1173.
Published Online: June 7, 2005
... thin films high-speed optical techniques laser beam effects temperature distribution specific heat electron relaxation time thermal conductivity reflectivity absorption coefficients electron-phonon interactions Ultrashort Laser Quantum Mechanics Metal Thin Film Two-Temperature Model...
Journal Articles
Journal Articles
Publisher: ASME
Article Type: Technical Papers
J. Heat Mass Transfer. April 2002, 124(2): 284–292.
Published Online: September 4, 2001
.... Associate Editor: D. Poulikakos. 24 April 2001 04 September 2001 metallic thin films heat conduction laser beam effects deformation electron-phonon interactions Conduction Heat Transfer Microscale Non-Equilibrium Transient Femtosecond (fs, 10 − 15   s...