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20182026
most citedMicrowave Package Design for Superconducting Quantum Processors

71 citations · 75 across the 10 of their papers we have counts for

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Showing 2024 · quant-phShow all

6 papers · 2 filters

quant-ph2024

Fast unconditional reset and leakage reduction in fixed-frequency transmon qubits

Liangyu Chen, Simon Pettersson Fors, Zixian Yan +24

The realization of fault-tolerant quantum computing requires the execution of quantum error-correction (QEC) schemes, to mitigate the fragile nature of qubits. In this context, to…

quant-ph20241 cited

Measuring Entanglement by Exploiting its Anti-symmetric Nature

Peyman Azodi, Benjamin Lienhard, Herschel A. Rabitz

Despite significant progress in experimental quantum sciences, measuring entanglement entropy remains challenging. Through a geometric perspective, we reveal the intrinsic anti-sym…

quant-ph2024

Low-latency machine learning FPGA accelerator for multi-qubit-state discrimination

Pradeep Kumar Gautam, Shantharam Kalipatnapu, Shankaranarayanan H +4

Measuring a qubit state is a fundamental yet error-prone operation in quantum computing. These errors can arise from various sources, such as crosstalk, spontaneous state transitio…

quant-ph202410 cited

Understanding Side-Channel Vulnerabilities in Superconducting Qubit Readout Architectures

Satvik Maurya, Chaithanya Naik Mude, Benjamin Lienhard +1

Frequency-multiplexing is an effective method to achieve resource-efficient superconducting qubit readout. Allowing multiple resonators to share a common feedline, the number of ca…

quant-ph2024

Efficient and Scalable Architectures for Multi-Level Superconducting Qubit Readout

Chaithanya Naik Mude, Satvik Maurya, Benjamin Lienhard +1

Realizing the full potential of quantum computing requires large-scale quantum computers capable of running quantum error correction (QEC) to mitigate hardware errors and maintain…

quant-ph2024

Decoherence-Free Subspaces Cannot Prevent the Collapse of Wave Functions

Alfred Li, Herschel A. Rabitz, Benjamin Lienhard

Efficacious quantum information processing relies on extended coherence and precise control. Investigating the limitations surrounding quantum processors is vital for their advance…