most citedEmergence of steady quantum transport in a superconducting processor

13 citations · 13 across the 3 of their papers we have counts for

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quant-ph202413 cited

Emergence of steady quantum transport in a superconducting processor

Pengfei Zhang, Yu Gao, Xiansong Xu +29

Non-equilibrium quantum transport is crucial to technological advances ranging from nanoelectronics to thermal management. In essence, it deals with the coherent transfer of energy…

quant-ph2024

Quantum highway: Observation of minimal and maximal speed limits for few and many-body states

Zitian Zhu, Lei Gao, Zehang Bao +30

Tracking the time evolution of a quantum state allows one to verify the thermalization rate or the propagation speed of correlations in generic quantum systems. Inspired by the ene…

quant-ph2024

Probing many-body Bell correlation depth with superconducting qubits

Ke Wang, Weikang Li, Shibo Xu +32

Quantum nonlocality describes a stronger form of quantum correlation than that of entanglement. It refutes Einstein's belief of local realism and is among the most distinctive and…

quant-ph2024

Non-Abelian braiding of Fibonacci anyons with a superconducting processor

Shibo Xu, Zheng-Zhi Sun, Ke Wang +29

Non-Abelian topological orders offer an intriguing path towards fault-tolerant quantum computation, where information can be encoded and manipulated in a topologically protected ma…

quant-ph2024

Measuring Spectral Form Factor in Many-Body Chaotic and Localized Phases of Quantum Processors

Hang Dong, Pengfei Zhang, Ceren B. Dag +28

The spectral form factor (SFF) captures universal spectral fluctuations as signatures of quantum chaos, and has been instrumental in advancing multiple frontiers of physics includi…

quant-ph2024

Testing the unified bounds of quantum speed limit

Yaozu Wu, Jiale Yuan, Chuanyu Zhang +12

Quantum speed limits (QSLs) impose fundamental constraints on the evolution speed of quantum systems. Traditionally, the Mandelstam-Tamm (MT) and Margolus-Levitin (ML) bounds have…