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An electromechanical Ising Hamiltonian

机译:机电伊辛哈密顿量

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Solving intractable mathematical problems in simulators composed of atoms, ions, photons, or electrons has recently emerged as a subject of intense interest. We extend this concept to phonons that are localized in spectrally pure resonances in an electromechanical system that enables their interactions to be exquisitely fashioned via electrical means. We harness this platform to emulate the Ising Hamiltonian whose spin 1/2 particles are replicated by the phase bistable vibrations from the parametric resonances of multiple modes. The coupling between the mechanical spins is created by generating two-mode squeezed states, which impart correlations between modes that can imitate a random, ferromagnetic state or an antiferromagnetic state on demand. These results suggest that an electromechanical simulator could be built for the Ising Hamiltonian in a nontrivial configuration, namely, for a large number of spins with multiple degrees of coupling.
机译:在由原子,离子,光子或电子组成的模拟器中解决棘手的数学问题近来引起了人们的极大兴趣。我们将此概念扩展到声子,该声子位于机电系统中的频谱纯共振中,该声子可以通过电气方式精确地相互作用。我们利用该平台来模拟伊辛哈密顿量,该伊辛哈密顿量的自旋1/2粒子通过多模态参数共振产生的相双稳态振动得以复制。机械自旋之间的耦合是通过生成两个模式的压缩状态而产生的,该模式压缩了两个模式之间的相关性,从而可以根据需要模拟随机的铁磁状态或反铁磁状态。这些结果表明,可以以非平凡的构造为伊辛·哈密顿量建立机电模拟器,即为具有多个耦合度的大量自旋。

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