Exact vs. restricted particle-hole dynamics in graphene flakes after optical quench shows periodic structures captured by low-order excitations but confined ones require higher-order contributions, positioning the setup as a quantum-computing benchmark.
Unconventional double-bended saturation of carrier occupation in optically excited graphene due to many-particle interactions , volume =
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Interaction-driven dynamics in graphene flakes as a benchmark for quantum simulation
Exact vs. restricted particle-hole dynamics in graphene flakes after optical quench shows periodic structures captured by low-order excitations but confined ones require higher-order contributions, positioning the setup as a quantum-computing benchmark.