Cite this article:
Linlin Ye, Zhaoqi Wu, Nanrun Zhou. Coherence and decoherence in generalized Shor’s algorithmJ. Chin. Phys. B, 2026, 35(6): 060304.
| Linlin Ye, Zhaoqi Wu, Nanrun Zhou. Coherence and decoherence in generalized Shor’s algorithmJ. Chin. Phys. B, 2026, 35(6): 060304. |
Coherence and decoherence in generalized Shor’s algorithm
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Abstract
Quantum coherence constitutes a fundamental physical mechanism essential to the study of quantum algorithms. We study coherence and decoherence in the generalized Shor’s algorithm where the register A is initialized in an arbitrary pure state, or the combined register AB is initialized in a pseudo-pure state, which encompasses the standard Shor’s algorithm as a special case. We derive both lower and upper bounds on the performance of the generalized Shor’s algorithm, and establish the relation between the probability of calculating the order r when register AB is initialized in a pseudo-pure state and that when register A is initialized in an arbitrary pure state. Moreover, we study coherence and decoherence in the noisy Shor’s algorithm and give a lower bound on the probability that we can calculate the order r. -
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