1988•Physical Review LettersRequires access

Magnetic hysteresis loop of one monolayer of Co on Cu(100)

T. Beier, Heribert Jahrreiß, D. Pescia, Th. Woike, Wolfgang Gudat

Open publisher page 67 citations

Abstract

We give experimental evidence that long-range ferromagnetic order exists at finite temperatures, over a macroscopic size and in the absence of magnetic field for 1 monolayer of Co on Cu(100). The magnetization as a function of the applied magnetic field follows an hysteresis loop. At remanence (zero-applied magnetic field) the film is in a single-domain state. The magnetization reversal occurs by breaking down of the film into magnetic domains.

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What this paper is about

We give experimental evidence that long-range ferromagnetic order exists at finite temperatures, over a macroscopic size and in the absence of magnetic field for 1 monolayer of Co on Cu(100). The magnetization as a function of the applied magnetic field follows an hysteresis loop. At remanence (zero-applied magnetic field) the film is in a single-domain state. The magnetization reversal occurs by breaking down of the film into magnetic domains.

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Available abstract

We give experimental evidence that long-range ferromagnetic order exists at finite temperatures, over a macroscopic size and in the absence of magnetic field for 1 monolayer of Co on Cu(100). The magnetization as a function of the applied magnetic field follows an hysteresis loop. At remanence (zero-applied magnetic field) the film is in a single-domain state. The magnetization reversal occurs by breaking down of the film into magnetic domains.

Key concepts: Condensed matter physics, Remanence, Magnetization, Hysteresis, Ferromagnetism, Magnetic hysteresis, Materials science, Magnetic domain

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