Optimizing heat dissipation in permalloy wire-tube nanostructures: A pathway to improved hyperthermia treatments

C Carlos Saji (Departamento de Física, Universidad de Santiago de Chile 1 , Av. Victor Jara 3493, Santiago 9170124, Región Metropolitana,) E Eduardo Saavedra J Juan Escrig (Departamento de Física, Universidad de Santiago de Chile 1 , 9170124 Santiago,)

Abstract

This work investigates the heating efficiency of permalloy wire-tube nanostructures through micromagnetic simulations. We demonstrate that specific geometrical configurations of these nanostructures enhance their heating capacity compared to conventional nanowires. This improvement is attributed to the optimized control of dynamic magnetization processes, which directly influence the specific absorption rate. Our findings provide valuable insights into designing advanced nanostructures with improved heating performance, paving the way for more efficient and minimally invasive magnetic hyperthermia treatments in cancer therapy. Additionally, the geometric tunability of wire-tube nanostructures underscores their potential for targeted biomedical applications, where precise thermal delivery is critical.

Article Details

Volume / Issue Vol. 126, Issue 18
Published May 05, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (3)

C

Carlos Saji

Departamento de Física, Universidad de Santiago de Chile 1 , Av. Victor Jara 3493, Santiago 9170124, Región Metropolitana,

E

Eduardo Saavedra

J

Juan Escrig

Departamento de Física, Universidad de Santiago de Chile 1 , 9170124 Santiago,