用基光前量子化模拟噪声中尺度量子器件上的强子物理

Michael Kreshchuk, Shaoyang Jia, William M. Kirby, G. Goldstein, J. Vary, P. Love
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引用次数: 5

摘要

量子化学和光前沿量子场论之间的类比,首先由Kenneth G. Wilson注意到,作为发展量子场论的光前沿量子模拟的动机。我们演示了强子结构的计算如何在基光前量化框架内的噪声中尺度量子器件上进行。我们在当前量子处理器上使用基表示的有效光前哈密顿量来计算介子的光前波函数。我们使用变分量子特征解算器求出基态能量和波函数,然后用它们计算出介子质量半径、衰变常数、弹性形状因子和电荷半径。
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Simulating hadronic physics on noisy intermediate-scale quantum devices using basis light-front quantization
The analogy between quantum chemistry and light-front quantum field theory, first noted by Kenneth G. Wilson, serves as motivation to develop light-front quantum simulation of quantum field theory. We demonstrate how calculations of hadron structure can be performed on Noisy Intermediate-Scale Quantum devices within the Basis Light-Front Quantization framework. We calculate the light-front wave functions of pions using an effective light-front Hamiltonian in a basis representation on a current quantum processor. We use the Variational Quantum Eigensolver to find the ground state energy and wave function, which is subsequently used to calculate pion mass radius, decay constant, elastic form factor, and charge radius.
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