The patent badge is an abbreviated version of the USPTO patent document. The patent badge does contain a link to the full patent document.

The patent badge is an abbreviated version of the USPTO patent document. The patent badge covers the following: Patent number, Date patent was issued, Date patent was filed, Title of the patent, Applicant, Inventor, Assignee, Attorney firm, Primary examiner, Assistant examiner, CPCs, and Abstract. The patent badge does contain a link to the full patent document (in Adobe Acrobat format, aka pdf). To download or print any patent click here.

Date of Patent:
Oct. 04, 2016

Filed:

Jun. 18, 2012
Applicants:

Takayuki Nozaki, Ibaraki, JP;

Yoshishige Suzuki, Ibaraki, JP;

Inventors:

Takayuki Nozaki, Ibaraki, JP;

Yoshishige Suzuki, Ibaraki, JP;

Attorney:
Primary Examiner:
Int. Cl.
CPC ...
G11B 5/147 (2006.01); G11C 11/16 (2006.01); H01L 29/66 (2006.01); H01L 43/08 (2006.01); H03B 15/00 (2006.01); H01F 41/30 (2006.01); B82Y 40/00 (2011.01); H01F 10/32 (2006.01);
U.S. Cl.
CPC ...
G11C 11/1675 (2013.01); B82Y 40/00 (2013.01); G11B 5/147 (2013.01); H01F 10/329 (2013.01); H01F 41/303 (2013.01); H01L 29/66984 (2013.01); H01L 43/08 (2013.01); H03B 15/006 (2013.01); H01F 10/3254 (2013.01); H01F 10/3286 (2013.01);
Abstract

To realize an electric field-driven type ferromagnetic resonance excitation method of low power consumption using an electric field as drive power, and provide a spin wave signal generation element and a spin current signal generation element using the method, a logic element using the elements, and a magnetic function element such as a high-frequency detection element and a magnetic recording device using the method. A magnetic field having a specific magnetic field application angle and magnetic field strength is applied to a laminate structure in which an ultrathin ferromagnetic layer sufficiently thin so that an electric field shield effect by conduction electrons does not occur and a magnetic anisotropy control layer are directly stacked on each other and an insulation barrier layer and an electrode layer are arranged in order on an ultrathin ferromagnetic layer side. An electric field having a high-frequency component of a magnetic resonance frequency is then applied between the magnetic anisotropy control layer and the electrode layer, thereby efficiently exciting ferromagnetic resonance in the ultrathin ferromagnetic layer.


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