Rise and fall of nonstabilizerness via random measurements
quant-ph, cond-mat.stat-mech
Submitted: 2025-07-15
Updated: 2025-09-08
Journal ref: Phys. Rev. Research 8, 013217 (2026)
DOI: 10.1103/31sq-k4m3
License: http://creativecommons.org/licenses/by/4.0/
The gist: We investigate the dynamics of nonstabilizerness - also known as `magic' - in monitored quantum circuits composed of random Clifford unitaries and local projective measurements.
Terminology
Abstract
We investigate the dynamics of nonstabilizerness - also known as `magic' - in monitored quantum circuits composed of random Clifford unitaries and local projective measurements. For measurements in the computational basis, we derive an analytical model for dynamics of the stabilizer nullity, showing that it decays in quantized steps and requires exponentially many measurements to vanish, which reveals the strong protection through Clifford scrambling. On the other hand, for measurements performed in rotated non-Clifford bases, measurements can both create and destroy nonstabilizerness. Here, the dynamics leads to a steady-state with non-trivial nonstabilizerness, independent of the initial state. We find that Haar-random states equilibrate in constant time, whereas stabilizer states exhibit linear-in-size relaxation time. While the stabilizer nullity is insensitive to the rotation angle, Stabilizer Rényi Entropies expose a richer structure in their dynamics. Our results uncover sharp distinctions between coarse and fine-grained nonstabilizerness diagnostics and demonstrate how measurements can both suppress and sustain quantum computational resources.
Sources
- Stabilizer Codes and Quantum Error Correction
- Efficient mutual magic and magic capacity with matrix product states
- Efficient witnessing and testing of magic in mixed quantum states
- Quantum Complexity and Chaos in Many-Qudit Doped Clifford Circuits
- Stabilizer Entropy and entanglement complexity in the Sachdev-Ye-Kitaev model
- Probing quantum complexity via universal saturation of stabilizer entropies
- Magic transition in measurement-only circuits
- Nonstabilizerness in the unitary and monitored quantum dynamics of XXZ-staggered and SYK models
- Multipartite entanglement structure of monitored quantum circuits
- Magic phase transitions in monitored gaussian fermions
- Estimating Non-Stabilizerness Dynamics Without Simulating It
- Nonstabilizerness and Error Resilience in Noisy Quantum Circuits
- Exact entanglement probability distribution of bi-partite randomised stabilizer states
- Entanglement in the stabilizer formalism
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