论文标题
具有诱捕离子的玻体系统的可编程量子模拟
Programmable quantum simulations of bosonic systems with trapped ions
论文作者
论文摘要
捕获的原子离子晶体是用于自旋系统量子模拟的领先平台,可编程和远程自旋旋转相互作用是由晶体中的声子激发介导的。我们描述了使用被困的离子晶体中的声子对骨器系统进行量子模拟的互补方法,此处是由捕获离子自旋的激发介导的。该方案具有高度的玻感耦合图,适用于诸如玻色子采样以及远距离骨孔和旋转波森式哈密顿量的仿真的硬性问题。
Trapped atomic ion crystals are a leading platform for quantum simulations of spin systems, with programmable and long-range spin-spin interactions mediated by excitations of phonons in the crystal. We describe a complementary approach for quantum simulations of bosonic systems using phonons in trapped-ion crystals, here mediated by excitations of the trapped ion spins. The scheme features a high degree of programability over a dense graph of bosonic couplings and is suitable for hard problems such as boson sampling and simulations of long range bosonic and spin-boson Hamiltonians.