Results 111 to 120 of about 22,995 (166)

The Heusler alloys [PDF]

open access: yesTransactions of the Faraday Society, 1912
A. A. Knowlton, O. C. Clifford
openaire   +1 more source

Ausblick

open access: yesCHIMIA, 1993
Karl Heusler
doaj   +2 more sources

Heusler ötvözet kristályosítása

open access: yesFiatal Műszakiak Tudományos Ülésszaka, 2003
Zsolt Veres, András Roósz
openaire   +1 more source
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Heusler‐Verbindungen

Chemie in unserer Zeit, 2021
ZusammenfassungMit mehr als 1000 bekannten Mitgliedern bilden Heusler‐Materialien eine große Gruppe an intermetallischen Verbindungen. Trotz ihrer verhältnismäßig einfachen kubischen Kristallstruktur zeigen sie eine enorme Vielzahl an physikalischen Effekten.
Johannes Kroder   +2 more
openaire   +1 more source

New magnetic compounds with Heusler and Heusler-related structures

Physical Review B, 1976
Magnetic and structural properties are presented for new ferromagnetic compounds of the form ${\mathrm{Rh}}_{2}\mathrm{Mn}X$ where $X$ is Al, Ga, In, Tl, Sn, Pb, and Sb. The exchange is described in terms of competing ferromagnetic Mn-Rh-Mn interactions and antiferromagnetic Mn-Mn interactions.
openaire   +1 more source

Heusler Alloys

Journal of Applied Physics, 1963
The results are given of comprehensive measurements on the magnetic and crystallographic properties of the ferromagnetic Heusler alloys Cu2MnAl, Cu2MnIn, Cu2MnSn, Cu2MnGe, Au2MnAl, and the antiferromagnetic alloy Cu2MnSb. The alloys Cu2MnBi and Cu2MnGa are polyphase and the ferromagnetism may be due to binary phases present.
D. P. Oxley   +2 more
openaire   +1 more source

Theory of Heusler and Full-Heusler Compounds

2015
Spintronics/magnetoelectronics brought at the center of scientific research the Heusler and full-Heusler compounds, since several among them have been shown to be half-metals. In this introductory chapter we present a study of the basic electronic and magnetic properties of both Heusler families; the so-called semi-Heusler alloys like NiMnSb and the ...
openaire   +1 more source

Heusler Compounds Go Nano

2015
This chapter is addressing the physical impact of ferromagnetic Heusler entities when approaching the nanoscale, e.g. as nanoparticles or as very small grains in magnetic shape Heusler alloys, on resulting magnetic as well as microstructural properties.
Meyer, J.   +5 more
openaire   +2 more sources

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