Minimizing hysteresis in martensite phase transforming magnetocaloric Heusler alloys
arXiv:1806.05075
Abstract
The large magnetocaloric effect in Heusler alloys showing martensite phase transformation puts them forward as efficient materials for magnetic refrigeration. However, irreversibility of the magnetocaloric cooling cycle is a major challenge for real applications. This irreversibility is directly linked to the thermal hysteresis at the first-order martensite phase transition. Therefore, minimizing the hysteresis is essential in order to achieve reversibility. Here we show a large reduction in the thermal hysteresis at the martensite transition in the NiMnIn and NiCoMnIn Heusler alloys upon the application of hydrostatic pressure. Our pressure dependent X-ray diffraction study on NiMnIn reveals that with increasing pressure the lattice parameters of the two crystallographic phases (austenite and martensite) change in such a way that they increasingly satisfy the geometric compatibility (co-factor) condition. These results provide an opportunity to overcome the hysteresis problem and hence the irreversible behavior in Heusler materials using pressure as an external parameter.
11 pages main text plus 2 supplementary material