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20162026
most citedExperimental simulation of open quantum system dynamics via Trotterization

52 citations · 79 across the 7 of their papers we have counts for

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18 papers · 1 filter

quant-ph2026

Demonstrating advantages of dynamic quantum circuits on a hybrid superconducting qubit-cavity processor

Hongbo Wu, Ling Hu, Jiasheng Mai +10

Dynamic quantum circuits (DQCs) provide a hardware-efficient route to quantum computing by reducing physical-qubit overhead and compressing circuit topology through mid-circuit mea…

quant-ph2026

A biased-erasure cavity qubit with hardware-efficient quantum error detection

Jiasheng Mai, Qiyu Liu, Xiaowei Deng +8

Erasure qubits are beneficial for quantum error correction due to their relaxed threshold requirements. While dual-rail erasure qubits have been demonstrated with a strong error hi…

quant-ph2025

Autonomous quantum error correction beyond break-even and its metrological application

Zhongchu Ni, Ling Hu, Yanyan Cai +8

The ability to extend the lifetime of a logical qubit beyond that of the best physical qubit available within the same system, i.e., the break-even point, is a prerequisite for bui…

quant-ph202152 cited

Experimental simulation of open quantum system dynamics via Trotterization

Jiaxiu Han, Weizhou Cai, Ling Hu +8

Digital quantum simulators provide a diversified tool for solving the evolution of quantum systems with complicated Hamiltonians and hold great potential for a wide range of applic…

quant-ph20211 cited

Phase sensitive Landau-Zener-Stückelberg interference in superconducting quantum circuit

Zhi-Xuan Yang, Yi-Meng Zhang, Yu-Xuan Zhou +5

Superconducting circuit quantum electrodynamics (QED) architecture composed of superconducting qubit and resonator is a powerful platform for exploring quantum physics and quantum…

quant-ph2020

High-efficiency arbitrary quantum operation on a high-dimensional quantum system

Weizhou Cai, Jiaxiu Han, Ling Hu +10

The ability to manipulate quantum systems lies at the heart of the development of quantum technology. The ultimate goal of quantum control is to realize arbitrary quantum operation…