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20222026
most citedTitanium Nitride Film on Sapphire Substrate with Low Dielectric Loss for Superconducting Qubits

26 citations · 26 across the 3 of their papers we have counts for

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quant-ph2026

Lifting connectivity bottlenecks in superconducting quantum processors via enriched native two-qubit gates

Hanyi Wang, Jingzhe Guo, Lijun Sun +17

Limited qubit connectivity is a central architectural constraint in superconducting quantum processors, whose planar layouts require additional gates to mediate interactions betwee…

quant-ph2025

Digital quantum simulation of squeezed states via enhanced bosonic encoding in a superconducting quantum processor

Hengyue Li, Yusheng Yang, Zhe-Hui Wang +6

We present a fully digital approach for simulating single-mode squeezed states on a superconducting quantum processor using an enhanced bosonic encoding strategy. By mapping up to…

quant-ph2024

High coherence fluxonium manufactured with a wafer-scale uniformity process

Fei Wang, Kannan Lu, Huijuan Zhan +32

Fluxonium qubits are recognized for their high coherence times and high operation fidelities, attributed to their unique design incorporating a superinductor, which is typically im…

quant-ph2023

The effects of disorder in superconducting materials on qubit coherence

Ran Gao, Feng Wu, Hantao Sun +13

Introducing disorderness in the superconducting materials has been considered promising to enhance the electromagnetic impedance and realize noise-resilient superconducting qubits.…

quant-ph2023

Native approach to controlled-Z gates in inductively coupled fluxonium qubits

Xizheng Ma, Gengyan Zhang, Feng Wu +27

The fluxonium qubits have emerged as a promising platform for gate-based quantum information processing. However, their extraordinary protection against charge fluctuations comes a…

quant-ph202226 cited

Titanium Nitride Film on Sapphire Substrate with Low Dielectric Loss for Superconducting Qubits

Hao Deng, Zhijun Song, Ran Gao +19

Dielectric loss is one of the major decoherence sources of superconducting qubits. Contemporary high-coherence superconducting qubits are formed by material systems mostly consisti…