Invention Grant
US09230626B2 Electrically gated three-terminal circuits and devices based on spin hall torque effects in magnetic nanostructures apparatus, methods and applications
有权
基于磁性纳米结构设备,方法和应用中的旋转霍尔转矩效应的电门控三端电路和器件
- Patent Title: Electrically gated three-terminal circuits and devices based on spin hall torque effects in magnetic nanostructures apparatus, methods and applications
- Patent Title (中): 基于磁性纳米结构设备,方法和应用中的旋转霍尔转矩效应的电门控三端电路和器件
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Application No.: US14420335Application Date: 2013-08-06
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Publication No.: US09230626B2Publication Date: 2016-01-05
- Inventor: Robert A. Buhrman , Daniel C. Ralph , Chi-Feng Pai , Luqiao Liu
- Applicant: Cornell University
- Applicant Address: US NY Ithaca
- Assignee: CORNELL UNIVERSITY
- Current Assignee: CORNELL UNIVERSITY
- Current Assignee Address: US NY Ithaca
- Agency: Perkins Coie LLP
- International Application: PCT/US2013/053874 WO 20130806
- International Announcement: WO2014/025838 WO 20140213
- Main IPC: G11C11/16
- IPC: G11C11/16 ; G11C11/18 ; H01L27/22 ; H01L43/04 ; H01L43/06 ; H01L43/10

Abstract:
3-terminal magnetic circuits and devices based on the spin-transfer torque (STT) effect via a combination of injection of spin-polarized electrons or charged particles by using a charge current in a spin Hall effect metal layer coupled to a free magnetic layer and application of a gate voltage to the free magnetic layer to manipulate the magnetization of the free magnetic layer for various applications, including non-volatile memory functions, logic functions and others. The charge current is applied to the spin Hall effect metal layer via first and second electrical terminals and the gate voltage is applied between a third electrical terminal and either of the first and second electrical terminals. The spin Hall effect metal layer can be adjacent to the free magnetic layer or in direct contact with the free magnetic layer to allow a spin-polarized current generated via a spin Hall effect under the charge current to enter the free magnetic layer. The disclosed 3-terminal magnetic circuits can also be applied to signal oscillator circuits and other applications.
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