Literature DB >> 25831491

A new regime of nanoscale thermal transport: Collective diffusion increases dissipation efficiency.

Kathleen M Hoogeboom-Pot1, Jorge N Hernandez-Charpak1, Xiaokun Gu2, Travis D Frazer1, Erik H Anderson3, Weilun Chao3, Roger W Falcone3, Ronggui Yang2, Margaret M Murnane1, Henry C Kapteyn4, Damiano Nardi1.   

Abstract

Understanding thermal transport from nanoscale heat sources is important for a fundamental description of energy flow in materials, as well as for many technological applications including thermal management in nanoelectronics and optoelectronics, thermoelectric devices, nanoenhanced photovoltaics, and nanoparticle-mediated thermal therapies. Thermal transport at the nanoscale is fundamentally different from that at the macroscale and is determined by the distribution of carrier mean free paths and energy dispersion in a material, the length scales of the heat sources, and the distance over which heat is transported. Past work has shown that Fourier's law for heat conduction dramatically overpredicts the rate of heat dissipation from heat sources with dimensions smaller than the mean free path of the dominant heat-carrying phonons. In this work, we uncover a new regime of nanoscale thermal transport that dominates when the separation between nanoscale heat sources is small compared with the dominant phonon mean free paths. Surprisingly, the interaction of phonons originating from neighboring heat sources enables more efficient diffusive-like heat dissipation, even from nanoscale heat sources much smaller than the dominant phonon mean free paths. This finding suggests that thermal management in nanoscale systems including integrated circuits might not be as challenging as previously projected. Finally, we demonstrate a unique capability to extract differential conductivity as a function of phonon mean free path in materials, allowing the first (to our knowledge) experimental validation of predictions from the recently developed first-principles calculations.

Entities:  

Keywords:  high harmonic generation; mean free path spectroscopy; nanoscale thermal transport; nondiffusive transport; ultrafast X-rays

Year:  2015        PMID: 25831491      PMCID: PMC4413272          DOI: 10.1073/pnas.1503449112

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  11 in total

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Journal:  Science       Date:  2012-06-08       Impact factor: 47.728

2.  Ultrafast extreme ultraviolet holography: dynamic monitoring of surface deformation.

Authors:  Ra'anan I Tobey; Mark E Siemens; Oren Cohen; Margaret M Murnane; Henry C Kapteyn; Keith A Nelson
Journal:  Opt Lett       Date:  2007-02-01       Impact factor: 3.776

3.  Quasi-ballistic thermal transport from nanoscale interfaces observed using ultrafast coherent soft X-ray beams.

Authors:  Mark E Siemens; Qing Li; Ronggui Yang; Keith A Nelson; Erik H Anderson; Margaret M Murnane; Henry C Kapteyn
Journal:  Nat Mater       Date:  2009-11-08       Impact factor: 43.841

4.  Thermal conductivity spectroscopy technique to measure phonon mean free paths.

Authors:  A J Minnich; J A Johnson; A J Schmidt; K Esfarjani; M S Dresselhaus; K A Nelson; G Chen
Journal:  Phys Rev Lett       Date:  2011-08-25       Impact factor: 9.161

5.  Phase-matched generation of coherent soft X-rays

Authors: 
Journal:  Science       Date:  1998-05-29       Impact factor: 47.728

6.  Direct measurement of room-temperature nondiffusive thermal transport over micron distances in a silicon membrane.

Authors:  Jeremy A Johnson; A A Maznev; John Cuffe; Jeffrey K Eliason; Austin J Minnich; Timothy Kehoe; Clivia M Sotomayor Torres; Gang Chen; Keith A Nelson
Journal:  Phys Rev Lett       Date:  2013-01-08       Impact factor: 9.161

7.  Broadband phonon mean free path contributions to thermal conductivity measured using frequency domain thermoreflectance.

Authors:  Keith T Regner; Daniel P Sellan; Zonghui Su; Cristina H Amon; Alan J H McGaughey; Jonathan A Malen
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

8.  Anomalous heat diffusion.

Authors:  Sha Liu; Peter Hänggi; Nianbei Li; Jie Ren; Baowen Li
Journal:  Phys Rev Lett       Date:  2014-01-28       Impact factor: 9.161

9.  Probing thermomechanics at the nanoscale: impulsively excited pseudosurface acoustic waves in hypersonic phononic crystals.

Authors:  Damiano Nardi; Marco Travagliati; Mark E Siemens; Qing Li; Margaret M Murnane; Henry C Kapteyn; Gabriele Ferrini; Fulvio Parmigiani; Francesco Banfi
Journal:  Nano Lett       Date:  2011-09-22       Impact factor: 11.189

10.  Universal phonon mean free path spectra in crystalline semiconductors at high temperature.

Authors:  Justin P Freedman; Jacob H Leach; Edward A Preble; Zlatko Sitar; Robert F Davis; Jonathan A Malen
Journal:  Sci Rep       Date:  2013-10-16       Impact factor: 4.379

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Authors:  Hossein Honarvar; Joshua L Knobloch; Travis D Frazer; Begoña Abad; Brendan McBennett; Mahmoud I Hussein; Henry C Kapteyn; Margaret M Murnane; Jorge N Hernandez-Charpak
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7.  A comprehensive optical analysis of nanoscale structures: from thin films to asymmetric nanocavities.

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8.  Measuring Phonon Mean Free Path Distributions by Probing Quasiballistic Phonon Transport in Grating Nanostructures.

Authors:  Lingping Zeng; Kimberlee C Collins; Yongjie Hu; Maria N Luckyanova; Alexei A Maznev; Samuel Huberman; Vazrik Chiloyan; Jiawei Zhou; Xiaopeng Huang; Keith A Nelson; Gang Chen
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9.  Full-field thermal imaging of quasiballistic crosstalk reduction in nanoscale devices.

Authors:  Amirkoushyar Ziabari; Pol Torres; Bjorn Vermeersch; Yi Xuan; Xavier Cartoixà; Alvar Torelló; Je-Hyeong Bahk; Yee Rui Koh; Maryam Parsa; Peide D Ye; F Xavier Alvarez; Ali Shakouri
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10.  Full-field imaging of thermal and acoustic dynamics in an individual nanostructure using tabletop high harmonic beams.

Authors:  Robert M Karl; Giulia F Mancini; Joshua L Knobloch; Travis D Frazer; Jorge N Hernandez-Charpak; Begoña Abad; Dennis F Gardner; Elisabeth R Shanblatt; Michael Tanksalvala; Christina L Porter; Charles S Bevis; Daniel E Adams; Henry C Kapteyn; Margaret M Murnane
Journal:  Sci Adv       Date:  2018-10-19       Impact factor: 14.136

  10 in total

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