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Research PaperResearchia:202608.14066

Universal magic state concentration

Jacopo Rizzo

Abstract

Magic plays a dual role in quantum computation: it promotes stabilizer dynamics from efficient classical simulability to universality, but it presents a central challenge for fault tolerance, since non-stabilizer operations are harder to protect against noise. Magic state distillation addresses this issue; however, existing protocols typically assume prior structure in the input, such as proximity to the target or a specified noise model. Here we introduce universal magic state concentration: a ...

Submitted: August 14, 2026Subjects: Quantum Physics; Quantum Computing

Description / Details

Magic plays a dual role in quantum computation: it promotes stabilizer dynamics from efficient classical simulability to universality, but it presents a central challenge for fault tolerance, since non-stabilizer operations are harder to protect against noise. Magic state distillation addresses this issue; however, existing protocols typically assume prior structure in the input, such as proximity to the target or a specified noise model. Here we introduce universal magic state concentration: a fixed stabilizer protocol that converts a few copies of an unknown pure non-stabilizer qubit state into an exact target magic state. Motivated by the obstruction to exact TT-state concentration, we show that CCZ\mathrm{CCZ} states behave fundamentally differently. Six input copies are necessary and sufficient to distill one exact CCZ\mathrm{CCZ} state, with an optimal success probability determined by the linearized order-three stabilizer Rényi entropy M3linM^{\mathrm{lin}}_3. Beyond this, we show that M3linM^{\mathrm{lin}}_3 governs the optimal state dependence of any protocol up to nine input copies, and we showcase an eight-copy protocol with improved success probability. Furthermore, block repetition of our protocols yields asymptotic distillation rates that achieve optimal scaling up to logarithmic factors. As a corollary, any unknown pure qubit magic state suffices for universal quantum computation via exact CCZ\mathrm{CCZ} injection. Together, these results identify the stabilizer Rényi entropy as a fundamental operational quantity in magic state distillation.


Source: arXiv:2608.13376v1 - http://arxiv.org/abs/2608.13376v1 PDF: https://arxiv.org/pdf/2608.13376v1 Original Link: http://arxiv.org/abs/2608.13376v1

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Date:
Aug 14, 2026
Topic:
Quantum Computing
Area:
Quantum Physics
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