Studying Phonon Mean Free Paths at the Nanoscale

Studying Phonon Mean Free Paths at the Nanoscale
Author :
Publisher :
Total Pages : 119
Release :
ISBN-10 : OCLC:970393661
ISBN-13 :
Rating : 4/5 (61 Downloads)

Book Synopsis Studying Phonon Mean Free Paths at the Nanoscale by : Lingping Zeng

Download or read book Studying Phonon Mean Free Paths at the Nanoscale written by Lingping Zeng and published by . This book was released on 2016 with total page 119 pages. Available in PDF, EPUB and Kindle. Book excerpt: Heat conduction in semiconductors and dielectrics involves cumulative contributions from phonons with different frequencies and mean free paths (MFPs). Knowing the phonon MFP distribution allows us to gain insight into the fundamental microscopic transport physics and has important implications for many energy applications. The key metric that quantifies the relative contributions of different phonon MFPs to thermal conductivity is termed thermal conductivity accumulation function. In this thesis, we advance a thermal conductivity spectroscopy technique based upon experimental observation of non-diffusive thermal transport using wire grid linear polarizer in conjunction with time-domain thermoreflectance (TDTR) pump-and-probe measurement setup. Consistent algorithm based on solution from the phonon Boltzmann transport equation (BTE) is also developed to approximately extract the thermal conductivity accumulation functions in materials studied. The heat flux suppression function appropriate for the experimental sample geometry relates the measured apparent thermal conductivities to the material's phonon MFP distributions. We develop a multi-dimensional thermal transport model based on the gray phonon BTE to find the suppression function relevant to our spectroscopy experiment. The simulation results reveal that the suppression function depends upon both the heater size and the heater array period. We also find that the suppression function depends significantly on the location of the temperature measurement. Residual suppression effect is observed for finite filling fractions (ratio of heater size to heater array period) due to the transport coupling in the underlying substrate induced by the neighboring heaters. Prior phonon MFP spectroscopy techniques suffer from one or several of the following limitations: (1) diffraction limited to micrometer lengthscales by focusing optics, (2) applying only to transparent materials, or (3) involving complex micro-fabrications. We explore an alternate approach here using wire grid linear polarizer in combination with TDTR measurement. The wire grid polarizer is designed with sub-wavelength gaps between neighboring heaters to prevent direct photo-excitation in the substrate while simultaneously functioning as heaters and thermometers during the measurement. The spectroscopy technique is demonstrated in crystalline silicon by studying length-dependent thermal transport across a range of lengthscales and temperatures. We utilize the calculated heat flux suppression functions and the measured size-dependent effective thermal conductivities to reconstruct the phonon MFPs in silicon and achieve reasonably good agreement with calculation results from first principle density function theory. Knowledge of phonon MFP distributions in thermoelectric materials will help design nanostructures to further reduce lattice thermal conductivity to achieve better thermoelectric performance in the next-generation thermoelectric devices. We apply the developed wire grid polarizer spectroscopy technique to study phonon MFP distributions in two thermoelectric materials: Nb0.95 Ti0.05FeSb and boron-doped nanocrystalline Si80Ge20B. We find that the dominant phonon MFPs that contribute to thermal conductivity in those two materials are in the a few tens to a few hundreds of nanometers. The measurement results also shed light on why nanostructuring is an effective approach to scattering phonons and improve the thermoelectric behavior.


Studying Phonon Mean Free Paths at the Nanoscale Related Books

Studying Phonon Mean Free Paths at the Nanoscale
Language: en
Pages: 119
Authors: Lingping Zeng
Categories:
Type: BOOK - Published: 2016 - Publisher:

DOWNLOAD EBOOK

Heat conduction in semiconductors and dielectrics involves cumulative contributions from phonons with different frequencies and mean free paths (MFPs). Knowing
Measuring Phonon Mean Free Path Distributions by Probing Quasiballistic Phonon Transport in Grating Nanostructures
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2015 - Publisher:

DOWNLOAD EBOOK

Heat conduction in semiconductors and dielectrics depends upon their phonon mean free paths that describe the average travelling distance between two consecutiv
Nanoscale Energy Transport and Harvesting
Language: en
Pages: 222
Authors: Zhang Gang
Categories: Science
Type: BOOK - Published: 2015-02-04 - Publisher: CRC Press

DOWNLOAD EBOOK

Energy transport and conversion in nanoscale structures is a rapidly expanding area of science. It looks set to make a significant impact on human life and, wit
21st Century Nanoscience – A Handbook
Language: en
Pages: 371
Authors: Klaus D. Sattler
Categories: Science
Type: BOOK - Published: 2019-11-21 - Publisher: CRC Press

DOWNLOAD EBOOK

This up-to-date reference is the most comprehensive summary of the field of nanoscience and its applications. It begins with fundamental properties at the nanos
Phonon Focusing and Phonon Transport
Language: en
Pages: 221
Authors: Igor Gaynitdinovich Kuleyev
Categories: Science
Type: BOOK - Published: 2020-06-08 - Publisher: Walter de Gruyter GmbH & Co KG

DOWNLOAD EBOOK

The monograph is devoted to the investigation of physical processes that govern the phonon transport in bulk and nanoscale single-crystal samples of cubic symme