Switching of a single atomic spin induced by spin injection: A model calculation

S. Kokado, K. Harigaya, A. Sakuma

研究成果: Conference contribution

抄録

Toward the manipulation of a single atomic spin, we theoretically study the switching of a localized quantum spin S=(Sx, Sy, S z) induced by spin injection in electrode/S/electrode junctions. This S has a uniaxial anisotropy energy, - \D\S2z, which shows the bistable potential between Sz= - S and S, with D being an anisotropy constant. Furthermore, S interacts with the atomic vibration. For the initial state of Sz= - S, we consider a situation in which up-spin electrons exhibit the spinflip tunneling from the left electrode to the right one through an exchange interaction between the electron spin and S. Using the master equation approach, we investigate the time t dependence of the current I, the expectation value of Sz, 〈Sz〉, and that of the vibration quantum number, 〈n〉, of an S=2 system, which corresponds to an Fe atom on CuN surface. The systems exhibit the switching or nonswitching depending on the transition probability due to spin-atomic vibration interaction within a period of 10 ns. In addition, the t dependence of I and 〈n〉 is explained on the basis of 〈Sz〉 and the probability distribution.

本文言語English
ホスト出版物のタイトルProceedings of the 9th International Symposium on Foundations of Quantum Mechanics in the Light of New Technology, ISQM-Tokyo 2008
出版社World Scientific Publishing Co. Pte Ltd
ページ142-145
ページ数4
ISBN(印刷版)981428212X, 9789814282123
DOI
出版ステータスPublished - 2009
イベント9th International Symposium on Foundations of Quantum Mechanics in the Light of New Technology, ISQM-Tokyo 2008 - Hatoyama, Saitama, Japan
継続期間: 2008 8月 252008 8月 28

出版物シリーズ

名前Proceedings of the 9th International Symposium on Foundations of Quantum Mechanics in the Light of New Technology, ISQM-Tokyo 2008

Other

Other9th International Symposium on Foundations of Quantum Mechanics in the Light of New Technology, ISQM-Tokyo 2008
国/地域Japan
CityHatoyama, Saitama
Period08/8/2508/8/28

ASJC Scopus subject areas

  • 原子分子物理学および光学

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