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20242026
most citedNon-symmetric GHZ states: weighted hypergraph and controlled-unitary graph representations

1 citations · 1 across the 4 of their papers we have counts for

collaborators

5 papers

quant-ph2026

Graph-State Circuit Blocks control Entanglement and Scrambling Velocities

Chandana Rao, Himanshu Sahu, Aranya Bhattacharya +3

Random circuit models often describe local dynamics using generic two-qubit gates, which have proven successful in capturing entanglement growth and operator spreading in many cont…

quant-ph2025

Symplectic Lattices and GKP Codes -- Simple Randomized Constructions from Cryptographic Lattices

Johannes Blömer, Yinzi Xiao, Zahra Raissi +1

We construct good GKP (Gottesman-Kitaev-Preskill) codes (in the sense of Conrad, Eisert and Seifert proposed) from standard short integer solution lattices (SIS) as well as from ri…

quant-ph2025

Orbit classification and analysis of qutrit graph states under local complementation and local scaling

Konstantinos-Rafail Revis, Hrachya Zakaryan, Zahra Raissi

Graph states and their entanglement properties are pivotal for the development of quantum computing and technologies. For qubits, local complementation, a graphical rule that conne…

quant-ph2024

-Colorable Graph States: Closed-Form Expressions and Quantum Orthogonal Arrays

Konstantinos-Rafail Revis, Hrachya Zakaryan, Zahra Raissi

Graph states are a fundamental class of multipartite entangled quantum states with wide-ranging applications in quantum information and computation. In this work, we develop a syst…

quant-ph2024★ 1 cited

Non-symmetric GHZ states: weighted hypergraph and controlled-unitary graph representations

Hrachya Zakaryan, Konstantinos-Rafail Revis, Zahra Raissi

Non-symmetric GHZ states (-GHZ), defined by unequal superpositions of and , naturally emerge in experiments due to decoherence, control errors, and stat…