A one-shot protocol generates constant-fidelity Bell pairs over arbitrary distances in a 2D qubit grid under local stochastic Pauli noise using a rectangular array of size Θ(R) by Θ(poly(log R)).
Nguyen, and Christopher A
3 Pith papers cite this work. Polarity classification is still indexing.
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UNVERDICTED 3representative citing papers
Embedding experimental quantum states into high-distance codes enables exponential speedups in fault-tolerant shadow tomography and cubic observable estimation over unencoded adaptive strategies.
A new code surgery protocol measures t logically disjoint Pauli products on any LDPC code using O(t ω (log t + log³ω)) ancillas in O(d) time while preserving LDPC property and fault distance.
citing papers explorer
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Fault-Tolerant One-Shot Entanglement Generation with Constant-Sized Quantum Devices in the Plane
A one-shot protocol generates constant-fidelity Bell pairs over arbitrary distances in a 2D qubit grid under local stochastic Pauli noise using a rectangular array of size Θ(R) by Θ(poly(log R)).
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Exponential speedups in fault-tolerant processing of quantum experiments
Embedding experimental quantum states into high-distance codes enables exponential speedups in fault-tolerant shadow tomography and cubic observable estimation over unencoded adaptive strategies.
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Parallel Logical Measurements via Quantum Code Surgery
A new code surgery protocol measures t logically disjoint Pauli products on any LDPC code using O(t ω (log t + log³ω)) ancillas in O(d) time while preserving LDPC property and fault distance.