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Manganites
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Abstract
This chapter focuses on manganites. There is a large similarity between the two families of mixed-valence compounds, the cuprates and the manganites. However, manganites display colossal magnetoresistance. The most fundamental property of manganites is the strong correlation between their transport properties and their magnetic properties. This correlation is caused by the double-exchange mechanism. The Hund interaction and the Jahn–Teller effect are the key ingredients of the microscopic theory. The transition to the ferromagnetic and metallic state is of a percolative nature. The superconducting–antiferromagnetic–superconducting Josephson junction is described. One can observe giant oscillations of the Josephson current as a function of a weak external magnetic field. The main properties, including the electron–hole asymmetry can be described in the framework of a generalised two-band picture. A peculiar isotope effect can be observed.
Oxford University PressOxford
Title: Manganites
Description:
Abstract
This chapter focuses on manganites.
There is a large similarity between the two families of mixed-valence compounds, the cuprates and the manganites.
However, manganites display colossal magnetoresistance.
The most fundamental property of manganites is the strong correlation between their transport properties and their magnetic properties.
This correlation is caused by the double-exchange mechanism.
The Hund interaction and the Jahn–Teller effect are the key ingredients of the microscopic theory.
The transition to the ferromagnetic and metallic state is of a percolative nature.
The superconducting–antiferromagnetic–superconducting Josephson junction is described.
One can observe giant oscillations of the Josephson current as a function of a weak external magnetic field.
The main properties, including the electron–hole asymmetry can be described in the framework of a generalised two-band picture.
A peculiar isotope effect can be observed.
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