대표연구 논문 실적

Scalable projected entangled-pair state representation of random quantum circuit states

발행년도 20250915
저자 Sung-Bin B. Lee, Hee Ryang Choi, Daniel Donghyon Ohm, Seung-Sup B. Lee
저널 PHYSICAL REVIEW RESEARCH
작성자
전지현
작성일
2025-09-25
조회
52
Article
Classical simulation of a programmable quantum processor is crucial in identifying the threshold of a quantum advantage. We demonstrate the simple update of projected entangled-pair states (PEPSs) in the Vidal gauge that represent random quantum circuit states, which center around recent quantum advantage claims. Applied to square lattices of qubits akin to state-of-the-art superconducting processors, the PEPS representation is exact for circuit depths less than Dtr = log2 chi, where chi is the maximum bond dimension and 2 <= <= 4 depends on the choice of two-qubit gates, independent of the qubit number n. We find the universal scaling behaviors of the state fidelity by treating large-scale circuits of n 104, using chi 128 on a conventional CPU. Our method has a polynomial scaling of computational costs with n for circuit depth D = O(log n) and is more advantageous than matrix product state approaches if n is large. This work underscores PEPSs as a scalable tool for benchmarking quantum algorithms with future potential for sampling applications using advanced contraction techniques.

http://dx.doi.org/10.1103/rzgm-cywf