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The spin-based probabilistic bit (p-bit) built on magnetic tunnel junction (MTJ) provides a low power and low overhead solution for building high performance Ising machine (IM). In this work, we propose a novel p-bit device that integrates a voltage-controlled magnetic anisotropy (VCMA) MTJ biased by spin-orbit torque (SOT) voltage. The proposed p-bit achieves an energy consumption of approximately 33fJ/bit per operation. A synchronous Ising network utilizing this device demonstrates rapid convergence to near-ground-state solutions when solving a 13 26 -vertex Max-Cut problem in simulation. Furthermore, a reconfigurable IM architecture, realized through the coupling of MTJ array, enables an all-spin Ising system capable of addressing various combinatorial optimization problems (COPs). The proposed IM system also exhibits functional reconfigurability among multiple invertible Boolean logic gates, achieving a peak accuracy of 95%. These results highlight the potential of the proposed p-bit as a promising building block for high-speed, low-power and universal Ising machines.
Huang et al. (Thu,) studied this question.
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