activity
20192026
most citedObserving frustrated quantum magnetism in two-dimensional ion crystals

3 citations · 3 across the 2 of their papers we have counts for

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6 papers · 1 filter

quant-ph2026

Large-scale multimode entangling-gate synthesis in trapped-ion systems

YingYe Huang, Wentao Chen, Guoyu Zou +3

Trapped-ion systems have emerged as a leading platform for scalable quantum information processing owing to their high-fidelity operations and long-range entangling capabilities. A…

quant-ph2024

A Single-Ion Information Engine for Charging Quantum Battery

Jialiang Zhang, Pengfei Wang, Wentao Chen +12

Information engines produce mechanical work through measurement and adaptive control. For information engines, the principal challenge lies in how to store the generated work for s…

quant-ph20223 cited

Observing frustrated quantum magnetism in two-dimensional ion crystals

Mu Qiao, Zhengyang Cai, Ye Wang +10

Two-dimensional (2D) quantum magnetism is a paradigm in strongly correlated many-body physics. The understanding of 2D quantum magnetism can be expedited by employing a controllabl…

quant-ph2019

Realization of two-dimensional crystal of ions in a monolithic Paul trap

Ye Wang, Mu Qiao, Zhengyang Cai +9

We present a simple Paul trap that stably accommodates up to a couple of dozens of \ensuremath{^{171}\mathrm{Yb}^+~} ions in a stationary two-dimensional lattice. The trap is const…

quant-ph2019

Error-Mitigated Quantum Gates Exceeding Physical Fidelities in a Trapped-Ion System

Shuaining Zhang, Yao Lu, Kuan Zhang +4

Various quantum applications can be reduced to estimating expectation values, which are inevitably deviated by operational and environmental errors. Although errors can be tackled…

quant-ph2019

Scalable global entangling gates on arbitrary ion qubits

Yao Lu, Shuaining Zhang, Kuan Zhang +5

A quantum algorithm can be decomposed into a sequence consisting of single qubit and 2-qubit entangling gates. To optimize the decomposition and achieve more efficient construction…