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- W2053443849 abstract "The resisitivity of Ni2−XMn1+XGa (X = 0 and 0.15) magnetic shape memory alloys has been investigated as a function of temperature (4–300 K) and hydrostatic pressure up to 30 kilobars. The resistivity is suppressed (X = 0) and enhanced (X = 0.15) with increasing pressure. A change in piezoresistivity with respect to pressure and temperature is observed. The negative and positive piezoresistivity increases with pressure for both the alloys. The residual resistivity and electron-electron scattering factor as a function of pressure reveal that for Ni2MnGa the electron-electron scattering is predominant, while the X = 0.15 specimen is dominated by the electron-magnon scattering. The value of electron-electron scattering factor is positive for both the samples, and it is decreasing (negative trend) for Ni2MnGa and increasing (positive trend) for X = 0.15 with pressure. The martensite transition temperature is found to be increased with the application of external pressure for both samples." @default.
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- W2053443849 date "2014-12-22" @default.
- W2053443849 modified "2023-10-13" @default.
- W2053443849 title "Investigations on the electronic transport and piezoresistivity properties of Ni<sub>2−X</sub>Mn<sub>1+X</sub>Ga (X = 0 and 0.15) Heusler alloys under hydrostatic pressure" @default.
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- W2053443849 doi "https://doi.org/10.1063/1.4904711" @default.
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