5 papers
Rate-Fidelity Control for Wide-Area Quantum Links
Connor Clayton, Cory Nunn, Quinn Carmack +4
Quantum network links must distribute entanglement at high rates while satisfying application-specified fidelity demands. However, wide-area deployed fiber links suffer from polari…
Distributed Quantum Error Correction with Permutation-Invariant Approximate Codes
Connor Clayton, Bruno Avritzer
Modular quantum computing architectures require error correction schemes that remain effective in the presense of noisy inter-processor operations. We introduce a distributed quant…
RISC-Q: A Generator for Real-Time Quantum Control System-on-Chips Compatible with RISC-V
Junyi Liu, Yi Lee, Haowei Deng +3
Quantum computing imposes stringent requirements for the precise control of large-scale qubit systems, including, for example, microsecond-latency feedback and nanosecond-precision…
Differentiable Quantum Computing for Large-scale Linear Control
Connor Clayton, Jiaqi Leng, Gengzhi Yang +3
As industrial models and designs grow increasingly complex, the demand for optimal control of large-scale dynamical systems has significantly increased. However, traditional method…
Efficient Routing on Quantum Networks using Adaptive Clustering
Connor Clayton, Xiaodi Wu, Bobby Bhattacharjee
We introduce QuARC, Quantum Adaptive Routing using Clusters, a novel clustering-based entanglement routing protocol that leverages redundant, multi-path routing through multi-parti…