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February 6, 2026Small0 citationsOpen Access

Finite Size‐Effects in Martensite Microstructure of Magnetic Shape Memory Films

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SKSatyakam KarHelmholtz-Zentrum Dresden-RossendorfASAman Pratap SinghDakota State UniversityKNKornelius NielschLeibniz Institute for Solid State and Materials Research

Key Points

  • The aim is to investigate how finite size influences the martensite microstructure in magnetic shape memory alloys.
  • Utilized Ni-Mn-Ga-based films as a model system.
  • Studied microstructure under both constrained and freestanding conditions.
  • Analyzed the influence of film thickness on microstructure characteristics.
  • Microfabricated patterns retain continuous film microstructure characteristics.
  • Film thickness significantly influences martensite microstructure.
  • Similarities and differences in finite size effects between ferromagnetic and ferroelastic microstructures were revealed.

Abstract

ABSTRACT Magnetic shape memory alloys, owing to their multifunctional properties, are a promising material system for integration into microsystems. Their multifunctionality arises from the coexistence of ferroelasticity and ferromagnetism. While size‐effects in ferromagnetic microstructure are well understood, corresponding experiments on the ferroelastic martensite microstructure are sparse. In this study, we use epitaxially grown Ni‐Mn‐Ga‐based films as a model system to investigate the influence of finite size on the martensite microstructure under constrained and freestanding conditions. The results show that the microfabricated patterns, in both conditions, retain the characteristics of their continuous film microstructures. Film thickness has a strong influence, as this is the smallest extension investigated in our study. Our analysis reveals similarities and differences between finite size effects in ferromagnetic and ferroelastic microstructure, which is crucial for using these multifunctional materials in microsystems.

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Cite This Study

Kar et al. (2026) studied this question.

synapsesocial.com/papers/698585db8f7c464f2300997chttps://doi.org/10.1002/smll.202512162
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