activity
20162021
most citedNanoscale electromechanics to measure thermal conductivity, expansion and interfacial losses

20 citations · 20 across the 1 of their papers we have counts for

collaborators

5 papers

cond-mat.mes-hall2021

Vapor-solid-solid growth dynamics in GaAs nanowires

Carina B. Maliakkal, Marcus Tornberg, Daniel Jacobsson +2

Semiconductor nanowires are promising material systems for coming of age nanotechnology. The usage of the vapor solid solid (VSS) route, where the catalyst used for promoting axial…

physics.app-ph2019

Limits of III-V nanowire growth based on particle dynamics

Marcus Tornberg, Carina B. Maliakkal, Daniel Jacobsson +2

Crystal growth of semiconductor nanowires from a liquid droplet depends on the stability of this droplet at the liquid-solid interface. By combining in-situ transmission electron m…

physics.app-ph2019

Independent control of nucleation and layer growth in nanowires

Carina B. Maliakkal, Erik K. Mårtensson, Marcus Tornberg +5

Control of the crystallization process is central to developing novel materials with atomic precision to meet the demands of electronic and quantum technology applications. Semicon…

physics.app-ph2019

In situ analysis of catalyst composition during gold catalyzed GaAs nanowire growth

Carina B. Maliakkal, Daniel Jacobsson, Marcus Tornberg +4

Semiconductor nanowires offer the opportunity to incorporate novel structures and functionality into electronic and optoelectronic devices. A clear understanding of the nanowire gr…

cond-mat.mes-hall2016★ 20 cited

Nanoscale electromechanics to measure thermal conductivity, expansion and interfacial losses

John P. Mathew, Raj Patel, Abhinandan Borah +3

We study the effect of localized Joule heating on the mechanical properties of doubly clamped nanowires under tensile stress. Local heating results in systematic variation of the r…