© 2020, The Author(s). As a foundational concept in many-body physics, electron–phonon interaction is essential to understanding and manipulating charge and energy flow in various electronic, photonic, and energy conversion devices. While much progress has been made in uncovering how phonons affect electron dynamics, it remains a challenge to directly observe the impact of electrons on phonon transport, especially at environmental temperatures. Here, we probe the effect of charge carriers on phonon heat transport at room temperature, using a modified transient thermal grating technique. By optically exciting electron-hole pairs in a crystalline silicon membrane, we single out the effect of the phonon–carrier interaction. The enhanced phonon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
Phonon transport across a silicon/vacuum-gap/silicon structure is modeled using lattice dynamics cal...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
The electron-phonon interaction is well known to create major resistance to electron transport in me...
<p>Phonon transport across a silicon/vacuum-gap/silicon structure is modeled using lattice dynamics ...
We study the heat power P transferred between electrons and phonons in thin metallic films deposited...
This paper reviews some recent experiments in which heat pulse techniques have been used to study th...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
Phonon transport across a silicon/vacuum-gap/silicon structure is modeled using lattice dynamics cal...
Heat conduction by phonons is a ubiquitous process that incorporates a wide range of physics and pla...
The electron-phonon interaction is well known to create major resistance to electron transport in me...
<p>Phonon transport across a silicon/vacuum-gap/silicon structure is modeled using lattice dynamics ...
We study the heat power P transferred between electrons and phonons in thin metallic films deposited...
This paper reviews some recent experiments in which heat pulse techniques have been used to study th...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...