A multiferroic material to search for the permanent electric dipole moment of the electron

We describe the first-principles design and subsequent synthesis of a new material with the specific functionalities required for a solid-state-based search for the permanent electric dipole moment of the electron. We show computationally that perovskite-structure europium barium titanate should exh...

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Veröffentlicht in:Nature materials 2010-08, Vol.9 (8), p.649-654
Hauptverfasser: Rushchanskii, K. Z., Kamba, S., Goian, V., Vaněk, P., Savinov, M., Prokleška, J., Nuzhnyy, D., Knížek, K., Laufek, F., Eckel, S., Lamoreaux, S. K., Sushkov, A. O., Ležaić, M., Spaldin, N. A.
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Sprache:eng
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Zusammenfassung:We describe the first-principles design and subsequent synthesis of a new material with the specific functionalities required for a solid-state-based search for the permanent electric dipole moment of the electron. We show computationally that perovskite-structure europium barium titanate should exhibit the required large and pressure-dependent ferroelectric polarization, local magnetic moments and absence of magnetic ordering at liquid-helium temperature. Subsequent synthesis and characterization of Eu 0.5 Ba 0.5 TiO 3 ceramics confirm the predicted desirable properties. In the standard model of particle physics the permanent electric dipole moment of particles is zero, although competing theories suggest it must exist to explain the asymmetry of matter and antimatter in the Universe. The design and synthesis of a new multiferroic material may now enable us to search for the electric dipole moment of electrons with unprecedented precision.
ISSN:1476-1122
1476-4660
DOI:10.1038/nmat2799