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quant-ph2026

Heralded Leakage Detection with Preserved Computational-State Coherence in a Fixed-Frequency Transmon

Takeaki Miyamura, Zhiling Wang, Peter A. Spring +5

Leakage out of the computational subspace is a major error mechanism in superconducting quantum processors. Detecting leakage without disturbing the encoded quantum information can…

quant-ph2026

QuBE/Qubex: an integrated hardware-software system for superconducting qubit experiments with broadband control

Akinori Machino, Kazuhisa Ogawa, Takefumi Miyoshi +21

Achieving high-fidelity operation in large-scale superconducting qubit systems requires not only control hardware with broad frequency coverage, low crosstalk, and tight synchroniz…

quant-ph2026

Fast, high-fidelity Transmon readout with intrinsic Purcell protection via nonperturbative cross-Kerr coupling

Guillaume Beaulieu, Jun-Zhe Chen, Marco Scigliuzzo +5

Dispersive readout of superconducting qubits relies on a transverse capacitive coupling that hybridizes the qubit with the readout resonator, subjecting the qubit to Purcell decay…

quant-ph2025

Selective Excitation of Superconducting Qubits with a Shared Control Line through Pulse Shaping

Ryo Matsuda, Ryutaro Ohira, Toshi Sumida +16

In conventional architectures of superconducting quantum computers, each qubit is connected to its own control line, leading to a commensurate increase in the number of microwave l…

quant-ph2025

Superconducting qubit readout enhanced by path signature

Shuxiang Cao, Zhen Shao, Jian-Qing Zheng +15

Quantum non-demolition measurement plays an essential role in quantum technology, crucial for quantum error correction, metrology, and sensing. Conventionally, the qubit state is c…