pith. sign in

Title resolution pending

4 Pith papers cite this work. Polarity classification is still indexing.

4 Pith papers citing it

citation-role summary

background 2

citation-polarity summary

fields

quant-ph 4

years

2026 2 2025 2

roles

background 2

polarities

background 2

representative citing papers

Nonstabilizerness Mpemba Effects

quant-ph · 2026-05-05 · unverdicted · novelty 7.0

In U(1)-symmetric random circuits, initial states with lower stabilizer Rényi entropy generate nonstabilizerness faster than those with higher entropy, with the effect also depending on spatial charge structure and extending to SU(2) circuits and Hamiltonian dynamics.

Rise and fall of nonstabilizerness via random measurements

quant-ph · 2025-07-15 · conditional · novelty 7.0

Analytical and numerical study of stabilizer nullity and Rényi entropies in monitored Clifford circuits shows quantized decay for computational measurements and size-dependent relaxation to a non-trivial steady state for rotated bases.

citing papers explorer

Showing 4 of 4 citing papers.

  • Nonstabilizerness Mpemba Effects quant-ph · 2026-05-05 · unverdicted · none · ref 13

    In U(1)-symmetric random circuits, initial states with lower stabilizer Rényi entropy generate nonstabilizerness faster than those with higher entropy, with the effect also depending on spatial charge structure and extending to SU(2) circuits and Hamiltonian dynamics.

  • Dismagicker: Unitary Gate for Non-Stabilizerness Reduction quant-ph · 2026-04-05 · unverdicted · none · ref 8

    Dismagicker is a non-Clifford unitary that suppresses non-stabilizerness in quantum states, improving simulation accuracy when combined with Clifford disentanglers.

  • Rise and fall of nonstabilizerness via random measurements quant-ph · 2025-07-15 · conditional · none · ref 21

    Analytical and numerical study of stabilizer nullity and Rényi entropies in monitored Clifford circuits shows quantized decay for computational measurements and size-dependent relaxation to a non-trivial steady state for rotated bases.

  • A trace distance-based geometric analysis of the stabilizer polytope for few-qubit systems quant-ph · 2025-04-16 · unverdicted · none · ref 94

    Geometric study of non-stabilizerness in few-qubit systems via trace distance to the stabilizer polytope, with state sampling, measure comparisons, an analytical expression, facet classification, and a concentration bound linking it to entanglement.