The possibility to tune the functional properties of nanomaterials is key to their technological applications. Superlattices, i.e., periodic repetitions of two or more materials in different dimensions are being explored for their potential as materials with tailor-made properties. Meanwhile, nanowires offer a myriad of possibilities to engineer systems at the nanoscale, as well as to combine materials which cannot be put together in conventional heterostructures due to the lattice mismatch. In this work, we investigate GaAs/GaP superlattices embedded in GaP nanowires and demonstrate the tunability of their phononic and optoelectronic properties by inelastic light scattering experiments corroborated by ab initio calculations. We observe cle...
Efficiently controlling phonon propagation is important in many applications, ranging from the desig...
Similar to electron waves, the phonon states in semiconductors can undergo changes induced by extern...
The nonequilibrium molecular dynamics (NEMD) method has been used to calculate the lattice thermal c...
The possibility to tune the functional properties of nanomaterials is key to their technological app...
The possibility to tune the functional properties of nanomaterials is key to their technological app...
Nanowire geometry allows semiconductor heterostructures to be obtained that are not achievable in pl...
One of the current challenges in nanoscience is tailoring the phononic properties of a material. Thi...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
Crystal phase engineering gives access to new types of periodic nanostructures, such as the so-calle...
We use molecular-dynamics simulations of vibrational wave packets to study the scattering of longitu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
This dissertation is focused on experimental investigation of confined acoustic phonons in nanostruc...
This paper has been accepted for publication in Electronic, Photonic, Plasmonic, Phononic and Magnet...
Application of nano-structures requires a knowledge of their fundamental physical (mechanical, elect...
The following article appeared in Journal of Applied Physics 115.3 (2014): 034307 and may be found a...
Efficiently controlling phonon propagation is important in many applications, ranging from the desig...
Similar to electron waves, the phonon states in semiconductors can undergo changes induced by extern...
The nonequilibrium molecular dynamics (NEMD) method has been used to calculate the lattice thermal c...
The possibility to tune the functional properties of nanomaterials is key to their technological app...
The possibility to tune the functional properties of nanomaterials is key to their technological app...
Nanowire geometry allows semiconductor heterostructures to be obtained that are not achievable in pl...
One of the current challenges in nanoscience is tailoring the phononic properties of a material. Thi...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
Crystal phase engineering gives access to new types of periodic nanostructures, such as the so-calle...
We use molecular-dynamics simulations of vibrational wave packets to study the scattering of longitu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
This dissertation is focused on experimental investigation of confined acoustic phonons in nanostruc...
This paper has been accepted for publication in Electronic, Photonic, Plasmonic, Phononic and Magnet...
Application of nano-structures requires a knowledge of their fundamental physical (mechanical, elect...
The following article appeared in Journal of Applied Physics 115.3 (2014): 034307 and may be found a...
Efficiently controlling phonon propagation is important in many applications, ranging from the desig...
Similar to electron waves, the phonon states in semiconductors can undergo changes induced by extern...
The nonequilibrium molecular dynamics (NEMD) method has been used to calculate the lattice thermal c...