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Quantum circuits for spin and flavor degrees of freedom of quarks forming nucleons

机译:用于形成核子的夸克的自旋和风味自由度的量子电路

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We discuss the quantum-circuit realization of the state of a nucleon in the scope of simple simmetry groups. Explicit algorithms are presented for the preparation of the state of a neutron or a proton as resulting from the composition of their quark constituents. We estimate the computational resources required for such a simulation and design a photonic network for its implementation. Moreover, we highlight that current work on three-body interactions in lattices of interacting qubits, combined with the measurement-based paradigm for quantum information processing, may also be suitable for the implementation of these nucleonic spin states.
机译:我们在简单的模拟组的范围内讨论核子状态的量子电路实现。提出了显式算法,用于准备由其夸克成分组成的中子或质子的状态。我们估算了这种仿真所需的计算资源,并设计了一个光子网络以实现该仿真。此外,我们强调指出,当前有关相互作用量子位的晶格中三体相互作用的研究,结合基于测量的范式进行量子信息处理,也可能适合于实现这些核子自旋态。

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