论文标题
观察非线性光学iSing机器中不同的相变
Observation of Distinct Phase Transitions in a Nonlinear Optical Ising Machine
论文作者
论文摘要
光学机器有望通过光学硬件加速优势解决复杂的优化问题。在这里,我们研究了通过空间光调节器,傅立叶光学器件和非线性晶体中的第二次谐波生成实现的非线性光学iSing机器的基态特性。通过调整基本和第二个谐波频率下的光强度的比率,我们在实验上观察了两个不同的铁磁与paragnetic相变的不同:二阶相变:磁化值连续持续变为零,并随着有效温度的有效温度升高,磁化值下降至零。我们的实验结果通过基于蒙特卡洛大都会杂货算法的数值模拟来证实,并且可以通过平均场理论理解不同相变的物理机制。我们的结果展示了非线性光学机器的极大灵活性,该机器可能会发现在解决组合优化问题时的重要潜在应用。
Optical Ising machines promise to solve complex optimization problems with an optical hardware acceleration advantage. Here we study the ground state properties of a nonlinear optical Ising machine realized by spatial light modulator, Fourier optics, and second harmonic generation in a nonlinear crystal. By tuning the ratio of the light intensities at the fundamental and second harmonic frequencies, we experimentally observe two distinct ferromagnetic-to-paramagnetic phase transitions: a second-order phase transition where the magnetization changes to zero continuously and a first-order phase transition where the magnetization drops to zero abruptly as the effective temperature increases. Our experimental results are corroborated by a numerical simulation based on the Monte Carlo Metropolis-Hastings algorithm, and the physical mechanism for the distinct phase transitions can be understood with a mean-field theory. Our results showcase the great flexibility of the nonlinear optical Ising machine, which may find important potential applications in solving combinatorial optimization problems.