papers

Publications (21)

quant-ph2024

High-precision pulse calibration of tunable couplers for high-fidelity two-qubit gates in superconducting quantum processors

Tian-Ming Li, Jia-Chi Zhang, Bing-Jie Chen +23

For superconducting quantum processors, stable high-fidelity two-qubit operations depend on precise flux control of the tunable coupler. However, the pulse distortion poses a signi…

quant-ph2025

On-demand shaped photon emission based on a parametrically modulated qubit

Xiang Li, Sheng-Yong Li, Si-Lu Zhao +13

In the circuit quantum electrodynamics architectures, to realize a long-range quantum network mediated by flying photon, it is necessary to shape the temporal profile of emitted ph…

quant-ph2026

Programmable spectral symmetries in an anisotropic quantum Rabi simulator

Jia-Cheng Song, Yu Liu, Ming-Chuan Wang +28

The quantum Rabi model captures fundamental aspects of light--matter interaction, where symmetry dictates both spectra and dynamics. Over the past years, experiments have explored…

quant-ph2025

Quantum Acoustics with Superconducting Qubits in the Multimode Transition-Coupling Regime

Li Li, Xinhui Ruan, Si-Lu Zhao +23

Hybrid mechanical-superconducting systems for quantum information processing have attracted significant attention due to their potential applications. In such systems, the weak cou…

quant-ph2026

Connectivity-induced surface-loss penalty in superconducting qubit-coupler lattices

Xu-Yang Gu, Gui-Han Liang, Ming-Chuan Wang +7

Recent advances in design and fabrication have increased the energy-relaxation times of isolated superconducting transmon qubits to the hundreds-of-microseconds regime, with report…

quant-ph2025

Flexible Readout and Unconditional Reset for Superconducting Multi-Qubit Processors with Tunable Purcell Filters

Yong-Xi Xiao, Da'er Feng, Xu-Yang Gu +18

Achieving high-fidelity qubit readout and reset while preserving qubit coherence is essential for quantum error correction and other advanced quantum algorithms. Here, we design an…

quant-ph2025

Many-body delocalization with a two-dimensional 70-qubit superconducting quantum simulator

Tian-Ming Li, Zheng-Hang Sun, Yun-Hao Shi +35

Quantum many-body systems with sufficiently strong disorder can exhibit a non-equilibrium phenomenon, known as the many-body localization (MBL), which is distinct from conventional…

quant-ph2025

Interplay between disorder and topology in Thouless pumping on a superconducting quantum processor

Yu Liu, Yu-Ran Zhang, Yun-Hao Shi +24

Topological phases are robust against weak perturbations, but break down when disorder becomes sufficiently strong. However, moderate disorder can also induce topologically nontriv…

quant-ph2025

Experimental demonstration of spontaneous symmetry breaking with emergent multi-qubit entanglement

Ri-Hua Zheng, Wen Ning, Jia-Hao Lü +8

Spontaneous symmetry breaking (SSB) is crucial to the occurrence of phase transitions. Once a phase transition occurs, a quantum system presents degenerate eigenstates that lack th…

quant-ph2023

Tunable Coupling Architectures with Capacitively Connecting Pads for Large-Scale Superconducting Multi-Qubit Processors

Gui-Han Liang, Xiao-Hui Song, Cheng-Lin Deng +20

We have proposed and experimentally verified a tunable inter-qubit coupling scheme for large-scale integration of superconducting qubits. The key feature of the scheme is the inser…

quant-ph2023

Quantum simulation of topological zero modes on a 41-qubit superconducting processor

Yun-Hao Shi, Yu Liu, Yu-Ran Zhang +21

Quantum simulation of different exotic topological phases of quantum matter on a noisy intermediate-scale quantum (NISQ) processor is attracting growing interest. Here, we develop…

quant-ph2025

Direct Implementation of High-Fidelity Three-Qubit Gates for Superconducting Processor with Tunable Couplers

Hao-Tian Liu, Bing-Jie Chen, Jia-Chi Zhang +18

Three-qubit gates can be constructed using combinations of single-qubit and two-qubit gates, making their independent realization unnecessary. However, direct implementation of thr…

quant-ph2025

Prethermalization by Random Multipolar Driving on a 78-Qubit Superconducting Processor

Zheng-He Liu, Yu Liu, Gui-Han Liang +43

Time-dependent drives hold the promise of realizing non-equilibrium many-body phenomena that are absent in undriven systems. Yet, drive-induced heating normally destabilizes the sy…

quant-ph2026

Multimode Purcell Filter for Superconducting-Qubit Reset and Readout with Intrinsic Purcell Protection

Xu-Yang Gu, Da'er Feng, Zhen-Yu Peng +17

Efficient qubit reset and leakage reduction are essential for scalable superconducting quantum computing, particularly in the context of quantum error correction. However, such ope…

quant-ph2025

Stable and Efficient Charging of Superconducting Capacitively Shunted Flux Quantum Batteries

Li Li, Si-Lu Zhao, Yun-Hao Shi +15

Quantum batteries, as miniature energy storage devices, have sparked significant research interest in recent years. However, achieving rapid and stable energy transfer in quantum b…

quant-ph2024

High-order topological pumping on a superconducting quantum processor

Cheng-Lin Deng, Yu Liu, Yu-Ran Zhang +21

High-order topological phases of matter refer to the systems of -dimensional bulk with the topology of -th order, exhibiting -dimensional boundary modes and can be cha…

quant-ph2026

Observation and Modulation of the Quantum Mpemba Effect on a Superconducting Quantum Processor

Yueshan Xu, Cai-Ping Fang, Bing-Jie Chen +33

In non-equilibrium quantum systems, the quantum Mpemba effect (QME) emerges as a counterintuitive phenomenon: systems exhibiting greater initial symmetry breaking restore symmetry…

quant-ph2025

Non-Equilibrium Criticality-Enhanced Quantum Sensing with Superconducting Qubits

Hao Li, Yaoling Yang, Yun-Hao Shi +24

Exploiting quantum features allows for estimating external parameters with precisions well beyond the capacity of classical sensors, a phenomenon known as quantum-enhanced precisio…

quant-ph2025

Observation of Inelastic Meson Scattering in a Floquet System using a Digital Quantum Simulator

Ziting Wang, Zi-Yong Ge, Yun-Hao Shi +19

Lattice gauge theories provide a non-perturbative framework for understanding confinement and hadronic physics, but their real-time dynamics remain challenging for classical comput…

quant-ph2026

Exploring Hilbert-Space Fragmentation on a Superconducting Processor

Yong-Yi Wang, Yun-Hao Shi, Zheng-Hang Sun +22

Isolated interacting quantum systems generally thermalize, yet there are several examples for the breakdown of ergodicity, such as many-body localization and quantum scars. Recentl…

quant-ph2023

Simulating Chern insulators on a superconducting quantum processor

Zhong-Cheng Xiang, Kaixuan Huang, Yu-Ran Zhang +16

The quantum Hall effect, fundamental in modern condensed matter physics, continuously inspires new theories and predicts emergent phases of matter. Here we experimentally demonstra…