Laser-induced thermal size effects in micro-Raman thermal conductivity measurements

T Taher Meydando (Department of Mechanical Engineering, Bogazici University 1 , Bebek, Istanbul 34342,) A Amir Abdolhosseinzadeh (Department of Mechanical Engineering, Bogazici University 1 , Bebek, Istanbul 34342,) E Emine Goktepe (Department of Mechanical Engineering, Bogazici University 1 , Bebek, Istanbul 34342,) M Milorad V. Milošević N Nazli Donmezer (Department of Mechanical Engineering, Bogazici University 1 , Bebek, Istanbul 34342,)

Abstract

Thermal conductivity measurements of submicrometer structures are at the core of the efficient power design of semiconductor devices. Micro-Raman spectroscopy measures thermal conductivity in a fast, nondestructive, and non-contact manner. However, the focused laser heating in micro-Raman experiments may cause drastic thermal size effects. To date, the role of such effects in the accuracy and limitations of the measurement has not been addressed. Here, we present an advanced thermal model to capture the role of material properties, laser power, and film thickness in the thermal size effects, based on the three-dimensional (3D) gray phonon Boltzmann transport equation. Recalling that laser-induced thermal size effects can lead to unexpectedly high local temperatures, even damaging the measured materials, our advanced 3D model gains particular importance for the accurate measurements of directional thermal conductivities in submicrometer structures using future high-resolution optical pump–probe techniques.

Article Details

Volume / Issue Vol. 126, Issue 5
Published February 03, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (5)

T

Taher Meydando

Department of Mechanical Engineering, Bogazici University 1 , Bebek, Istanbul 34342,

A

Amir Abdolhosseinzadeh

Department of Mechanical Engineering, Bogazici University 1 , Bebek, Istanbul 34342,

E

Emine Goktepe

Department of Mechanical Engineering, Bogazici University 1 , Bebek, Istanbul 34342,

M

Milorad V. Milošević

N

Nazli Donmezer

Department of Mechanical Engineering, Bogazici University 1 , Bebek, Istanbul 34342,