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Welcome! | Stanford NanoHeat Lab

Department of Mechanical Engineering. Kenneth E. Goodson. We study heat transfer in electronic nanostructures and packaging, microfluidic heat sinks, and thermoelectric and photonic energy conversion devices. We focus on fundamental transport physics and interact extensively with semiconductor and energy companies. Kodama, T.,. Ohnishi, M., Park, W.,. Vol 16, pp. 892-897. Palko, Lee, Zhang, Dusseault, Maitra, Won, Agonafer, Moss, Houshmand,. Rong, Wilbur,. Rockosi, Mykyta, Resler, Altman, Asheghi,. Mikke...

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Department of Mechanical Engineering. Kenneth E. Goodson. We study heat transfer in electronic nanostructures and packaging, microfluidic heat sinks, and thermoelectric and photonic energy conversion devices. We focus on fundamental transport physics and interact extensively with semiconductor and energy companies. Kodama, T.,. Ohnishi, M., Park, W.,. Vol 16, pp. 892-897. Palko, Lee, Zhang, Dusseault, Maitra, Won, Agonafer, Moss, Houshmand,. Rong, Wilbur,. Rockosi, Mykyta, Resler, Altman, Asheghi,. Mikke...
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Welcome! | Stanford NanoHeat Lab | nanoheat.stanford.edu Reviews

https://nanoheat.stanford.edu

Department of Mechanical Engineering. Kenneth E. Goodson. We study heat transfer in electronic nanostructures and packaging, microfluidic heat sinks, and thermoelectric and photonic energy conversion devices. We focus on fundamental transport physics and interact extensively with semiconductor and energy companies. Kodama, T.,. Ohnishi, M., Park, W.,. Vol 16, pp. 892-897. Palko, Lee, Zhang, Dusseault, Maitra, Won, Agonafer, Moss, Houshmand,. Rong, Wilbur,. Rockosi, Mykyta, Resler, Altman, Asheghi,. Mikke...

INTERNAL PAGES

nanoheat.stanford.edu nanoheat.stanford.edu
1

Technical Excellence Award | Stanford NanoHeat Lab

http://nanoheat.stanford.edu/news/2014/technical-excellence-award

Department of Mechanical Engineering. Kenneth E. Goodson. The Semiconductor Research Corporation (SRC) has awarded Prof. Goodson the 2014 Technical Excellence Award for sustained contributions that significantly enhance the productivity of the semiconductor industry. The SRC funds hundreds of faculty and students each year, largely through competitive 3-year awards. Tanya Liu et al. win Best Poster at ITHERM. Metal Inverse Opals Could Better Cool Electronics. Monolithic 3D for Energy-Efficient Computing.

2

Phonon scattering in strained transition layers for GaN heteroepitaxy | Stanford NanoHeat Lab

http://nanoheat.stanford.edu/publications/2014/phonon-scattering-strained-transition-layers-gan-heteroepitaxy

Department of Mechanical Engineering. Kenneth E. Goodson. Phonon scattering in strained transition layers for GaN heteroepitaxy. Li, Y, Hoke, W., Altman, D.A., Asheghi, M.,. And Goodson, K.E., 2014, Phonon scattering in strained transition layers for GaN heteroepitaxy,. Vol 89, 115301. Conduction Cooling Limits for Power Semiconductor Nanostructures (NJTT). Phonon and Electron Nonequilibrium at Interfaces. Books and Book Chapters. 2012 Site by Linnea Williams.

3

Alumni | Stanford NanoHeat Lab

http://nanoheat.stanford.edu/alumni

Department of Mechanical Engineering. Kenneth E. Goodson. PhD GRADUATES - University Faculty. Prof Amy Marconnet (Purdue). PhD ME 2012. Amy joined the Purdue Mechanical Engineering faculty effective August 2013. Amy's dissertation focused on thermal phenomena in nanostructured materials including carbon nanotubes and silicon based nanostructures. She authored a number of high profile papers including our recent contribution to Reviews of Modern Physics on CNT thermal phenomena. Prof Eric Pop (Stanford).

4

Thermal Transport: Cool Electronics | Stanford NanoHeat Lab

http://nanoheat.stanford.edu/publications/2015/thermal-transport-cool-electronics

Department of Mechanical Engineering. Kenneth E. Goodson. Thermal Transport: Cool Electronics. Cho, J.,. And Goodson, K.E., 2015, Thermal Transport: Cool Electronics,. Vol 14, pp. 136-137. Conduction Cooling Limits for Power Semiconductor Nanostructures (NJTT). A variety of modern high-power electronic devices are based on high electron mobility transistors (HEMT) and generate enormous heat fluxes that can approach tens of kW/cm2. The overall power. Phonon and Electron Nonequilibrium at Interfaces.

5

Yoonjin and Jaeho to join UC Irvine faculty | Stanford NanoHeat Lab

http://nanoheat.stanford.edu/news/2014/yoonjin-and-jaeho-join-uc-irvine-faculty

Department of Mechanical Engineering. Kenneth E. Goodson. Yoonjin and Jaeho to join UC Irvine faculty. Congrats to PhD alums Yoonjin Won (2011) and Jaeho Lee (2012), who are joining the UCI Mechanical and Aerospace Department. They will build programs ranging from nanoscale conduction to advanced convective heat sinks. We wish them both the very best! Tanya Liu et al. win Best Poster at ITHERM. Metal Inverse Opals Could Better Cool Electronics. Monolithic 3D for Energy-Efficient Computing. Jaeho Lee wins...

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Welcome! | Stanford NanoHeat Lab

Department of Mechanical Engineering. Kenneth E. Goodson. We study heat transfer in electronic nanostructures and packaging, microfluidic heat sinks, and thermoelectric and photonic energy conversion devices. We focus on fundamental transport physics and interact extensively with semiconductor and energy companies. Kodama, T.,. Ohnishi, M., Park, W.,. Vol 16, pp. 892-897. Palko, Lee, Zhang, Dusseault, Maitra, Won, Agonafer, Moss, Houshmand,. Rong, Wilbur,. Rockosi, Mykyta, Resler, Altman, Asheghi,. Mikke...

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