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Low power on-chip clocking for nanomagnetic logic circuits

机译:纳磁逻辑电路的低功耗片上时钟

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It is demonstrated that it is possible to switch the magnetisation of nanomagnets by employing the exchange interaction between magnets. This can implement on-chip clocking for nanomagnetic logic circuits by using a current-carrying copper wire circularly wrapped by ferromagnetic cladding. This scheme is potentially more energy efficient than yoked cladding clocking using an external magnetic field for magnetisation switching. Maxwell simulation shows that current flowing through copper wire can be reduced by about one hundred times compared with yoked clocking, which means power consumption could be lowered by 10 times. Micromagnetic simulation shows that the nanomagnetic chain aligned on the proposed clocking can achieve a correct functional state.
机译:已经证明可以通过利用磁体之间的交换相互作用来切换纳米磁体的磁化。这可以通过使用由铁磁包层圆形包裹的载流铜线来实现纳米磁逻辑电路的片上时钟。该方案可能比使用外部磁场进行磁化切换的叉式包层时钟更节能。麦克斯韦(Maxwell)的仿真表明,与带轭时钟相比,流经铜线的电流可减少约100倍,这意味着功耗可降低10倍。微观磁模拟表明,按提出的时钟排列的纳米磁链可以达到正确的功能状态。

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