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Low voltage control of exchange coupling in a ferromagnet-semiconductor quantum well hybrid structure

Authors :
O. S. Ken
V. L. Korenev
N. M. Lebedeva
Dmitri R. Yakovlev
G. Karczewski
D. Kudlacik
N. D. Ilyinskaya
Tomasz Wojtowicz
Victor F. Sapega
E. Kirstein
I. A. Akimov
Yu. G. Kusrayev
I. V. Kalitukha
T. A. Komissarova
Manfred Bayer
Maciej Wiater
E. A. Zhukov
Source :
Nature Communications, Vol 10, Iss 1, Pp 1-8 (2019), Nature Communications
Publication Year :
2019
Publisher :
Nature Portfolio, 2019.

Abstract

Voltage control of ferromagnetism on the nanometer scale is highly appealing for the development of novel electronic devices with low power consumption, high operation speed, reliable reversibility and compatibility with semiconductor technology. Hybrid structures based on the assembly of ferromagnetic and semiconducting building blocks are expected to show magnetic order as a ferromagnet and to be electrically tunable as a semiconductor. Here, we demonstrate the electrical control of the exchange coupling in a hybrid consisting of a ferromagnetic Co layer and a semiconductor CdTe quantum well, separated by a thin non-magnetic (Cd,Mg)Te barrier. The electric field controls the phononic ac Stark effect—the indirect exchange mechanism that is mediated by elliptically polarized phonons emitted from the ferromagnet. The effective magnetic field of the exchange interaction reaches up to 2.5 Tesla and can be turned on and off by application of 1V bias across the heterostructure.<br />Manipulating magnetic orders by electric fields promises energy efficient spintronic applications. Here the authors demonstrate electrical control of s-p exchange interaction in a ferromagnet-semiconductor quantum well structure due to the phononic ac Stark effect.

Details

Language :
English
ISSN :
20411723
Volume :
10
Issue :
1
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....6cfe618d6c8b64b9b75ab9f6df175a1a