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quant-ph2026

Clifford disentanglers for entanglement reduction in molecular electronic structure simulations

Longfei Chang, Zibo Wu, Yunzhi Li +5

Entanglement is a key bottleneck limiting the efficiency of tensor-network and quantum simulations of molecular electronic structures. Here, we systematically assess and extend Cli…

quant-ph2026

Dismagicker: Unitary Gate for Non-Stabilizerness Reduction

Jiale Huang, Rongyi Lv, Xiangjian Qian +1

We introduce the notion of dismagicker: non-Clifford unitary gate designed to reduce the non-stabilizerness (also called magic) of quantum many-body states. Although both entanglem…

quant-ph2025

Disentangling critical quantum spin chains with Clifford circuits

Chaohui Fan, Xiangjian Qian, Hua-Chen Zhang +3

Clifford circuits can be utilized to disentangle quantum states with polynomial cost, thanks to the Gottesman-Knill theorem. Based on this idea, the Clifford circuits augmented mat…

quant-ph2024

Augmenting Finite Temperature Tensor Network with Clifford Circuits

Xiangjian Qian, Jiale Huang, Mingpu Qin

Recent studies have highlighted the combination of tensor network methods and the stabilizer formalism as a very effective framework for simulating quantum many-body systems, encom…

quant-ph2024

Non-stabilizerness Entanglement Entropy: a measure of hardness in the classical simulation of quantum many-body systems

Jiale Huang, Xiangjian Qian, Mingpu Qin

Classical and quantum states can be distinguished by entanglement entropy, which can be viewed as a measure of quantum resources. Entanglement entropy also plays a pivotal role in…