Abstract
Proposed herein is a system including a distributed quantum compiler and controller that can decide where to place quantum circuit fragments by brokering a live error budget across quantum processing unit (QPU) compute operations, quantum memory wait time, remote entanglement, measurement, and classical-control latency. Instead of only minimizing circuit cuts, queue time, or network cost, the system creates an auditable Error Budget Contract and Placement Proof showing why a distributed execution plan is expected to satisfy a job’s end-to-end accuracy target. If QPU calibration, queue depth, or quantum-network fidelity changes, the system can automatically re-evaluate the plan and, where execution state permits, repartition, remap, defer, or restart the job before the predicted error limit is exceeded.
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 License.
Recommended Citation
Putta, Bharat Kumar, "QUANTUM JOB PLACEMENT AND CIRCUIT PARTITIONING WITH NETWORK-AWARE ERROR BUDGET BROKERAGE", Technical Disclosure Commons, (July 28, 2026)
https://www.tdcommons.org/dpubs_series/11197